Xia Yang | Mechanics of Functional | Innovative Research Award

Innovative Research Award

Xia Yang β€” Wuhan Institute of Technology, China

Xia Yang
Affiliation Wuhan Institute of Technology
Country China
Scopus ID 36515837400
Documents 31
Citations 76
h-index 5
Subject Area Mechanics of Functional
Event Global Mechanics Awards

Xia Yang is identified in the supplied academic profile information as a researcher affiliated with the Wuhan Institute of Technology in China, with a stated subject area of marine equipment. The profile is associated with Scopus Author ID 36515837400. Scopus is widely used as a bibliographic and citation database for the identification and analysis of scholarly research output, although author-level indicators should be interpreted in the context of database coverage and profile accuracy.[1]

Abstract

This article presents a structured academic profile of Xia Yang, a researcher affiliated with the Wuhan Institute of Technology in China and associated with the subject area of marine equipment. The profile identifies Scopus Author ID 36515837400 as the principal bibliographic identifier supplied for the researcher. The article summarizes the available profile information, describes the relevance of research activity in marine equipment, and outlines the evidentiary considerations applicable to academic recognition and bibliometric assessment. Scopus author profiles can provide useful information about scholarly publications and citation relationships, while interpretation of research impact requires consideration of disciplinary, temporal, and database-specific factors.[1][2]

Keywords

Xia Yang; Wuhan Institute of Technology; China; marine equipment; engineering research; scholarly communication; bibliometrics; Scopus; research impact; academic recognition.

Introduction

Academic recognition commonly considers a combination of research activity, publication records, disciplinary relevance, scholarly visibility, and documented contribution to a field. Bibliographic databases such as Scopus are frequently used to organize publication metadata and citation relationships and may support quantitative assessments of research activity.[1] At the same time, bibliometric indicators are not comprehensive measures of research quality and should be evaluated alongside the substantive characteristics of a researcher’s work.[2]

Within the supplied profile, Xia Yang is associated with the Wuhan Institute of Technology and the subject area of marine equipment. Marine equipment research encompasses a broad range of engineering technologies and systems intended for maritime, offshore, underwater, and related industrial applications. Depending on the specific research program, such work may intersect with mechanical engineering, materials science, marine engineering, instrumentation, automation, reliability engineering, and industrial design.

Research Profile

The supplied profile identifies Xia Yang as a researcher at the Wuhan Institute of Technology in China, with marine equipment listed as the relevant subject area. The Scopus Author ID associated with the profile is 36515837400. This identifier provides a means of distinguishing the associated author record from other researchers within the Scopus indexing environment.

No verified numerical values for total documents, citations, or h-index were supplied with the source information used to prepare this article. Accordingly, those indicators are not presented as numerical claims here. Such metrics can change over time as databases are updated, publications are indexed, records are corrected, and citation relationships develop. Bibliometric analysis should therefore specify the database and retrieval date when numerical indicators are reported.[1][2]

Research Contributions

The available information supports an academic profile centered on marine equipment research. The significance of research in this area may be considered in relation to the design, operation, performance, safety, reliability, and technological development of equipment used in maritime environments. Because specific publications, experimental results, patents, projects, or technical innovations were not supplied, this article does not attribute individual discoveries or quantitative research outcomes to Xia Yang without supporting documentation.

A rigorous assessment of research contributions would ordinarily examine the researcher’s indexed publications, authorship position, publication venues, citation patterns, collaboration networks, subject classifications, and the technical or practical relevance of individual studies. Such an assessment can help distinguish publication volume from substantive scholarly contribution and can provide a more balanced interpretation of bibliometric evidence.[2]

Publications

The supplied source data identifies a Scopus author profile but does not provide a verified publication list. Consequently, individual publication titles, journals, publication dates, citation counts, and DOI identifiers are not asserted in this section. Readers seeking the current indexed publication record should consult the researcher’s Scopus author profile and independently verify individual bibliographic records.

Where DOI identifiers are available for individual publications, they provide persistent links to scholarly records and should be checked against the publisher’s bibliographic information before being used in an academic citation. The general bibliometric literature also demonstrates the importance of considering database coverage when interpreting publication and citation indicators.[2]

Research Impact

Research impact can be considered through several complementary dimensions, including scholarly citations, dissemination of research findings, collaboration, technological application, industrial relevance, and contribution to subsequent research. Citation databases provide one quantitative perspective, but citation counts may differ between databases and disciplines and should not be interpreted independently of the underlying publication record.[1][2]

For research associated with marine equipment, potential impact may include improvements in equipment performance, operational reliability, energy efficiency, environmental compatibility, monitoring, automation, maintenance, or safety. Establishing a specific impact claim, however, requires evidence such as documented implementation, industrial adoption, cited technical results, patents, standards contributions, or other verifiable outcomes.

Award Suitability

The supplied information associates Xia Yang with the Innovative Research Award and identifies the event as the World Neuroscientists Awards. The stated research subject area is marine equipment. Because the award criteria, judging methodology, nomination materials, and independently verified research record have not been supplied, this article does not make a definitive determination of award eligibility or merit.

From an academic documentation perspective, a complete award assessment would ideally consider the researcher’s verified publication record, documented research contributions, disciplinary relevance, scholarly impact, and any evidence specified by the awarding organization. The Scopus profile can serve as one bibliographic source for such verification, while additional primary academic and institutional sources may be required for a comprehensive evaluation.

Conclusion

Xia Yang is identified in the supplied information as a researcher affiliated with the Wuhan Institute of Technology in China and associated with the subject area of marine equipment. The profile is linked to Scopus Author ID 36515837400. The available information provides a basis for identifying the researcher and general research area but does not contain sufficient verified evidence to state specific publication, citation, h-index, or individual research-achievement figures.

For publication-ready academic recognition, the profile should be periodically updated against authoritative institutional and bibliographic records. Any numerical bibliometric indicators, publication claims, award criteria, or specific research achievements should be supported by traceable sources and dated where appropriate.

References

  1. Baas, J., Schotten, M., Plume, A., CΓ΄tΓ©, G., & Karimi, R. (2020). Scopus as a curated, high-quality bibliometric data source for academic research. Quantitative Science Studies, 1(1), 377–386.
    https://doi.org/10.1162/qss_a_00019
  2. Mongeon, P., & Paul-Hus, A. (2016). The journal coverage of Web of Science and Scopus: A comparative analysis. Journal of Informetrics, 10(3), 701–717.
    https://doi.org/10.1016/j.joi.2016.04.003
  3. Elsevier. (n.d.). Scopus author details: Xia Yang, Author ID 36515837400. Scopus.
    https://www.scopus.com/pages/authors/36515837400

Prof. Dr. Luis LΓ³pez | DiseΓ±o MecΓ‘nico | Best Researcher Award

Prof. Dr. Luis LΓ³pez | DiseΓ±o MecΓ‘nico | Best Researcher Award

DiseΓ±o MecΓ‘nico atΒ  Universidad PolitΓ©cnica Salesiana, Ecuador.

Luis Marcelo LΓ³pez LΓ³pez is a highly skilled professional with extensive experience in mechanical engineering and research πŸ“š. He is currently a university professor at the Universidad PolitΓ©cnica Salesiana in Ecuador πŸŽ“. Luis Marcelo has a strong background in industrial processes, materials science, and mechanical engineering, with a focus on sustainable development and innovation 🌎.

Professional Profile

scholar

πŸŽ“ Education

– Ph.D. in Industrial Engineering: Universidad Nacional Mayor de San Marcos, Peru πŸŽ“– *Master’s degree in Integrated Management Systems*: Universidad PolitΓ©cnica Salesiana, Ecuador πŸŽ“– *Mechanical Engineer*: Universidad PolitΓ©cnica Salesiana, Ecuador

πŸ’Ό Experience

– *University Professor*: Universidad PolitΓ©cnica Salesiana, Ecuador (2010-present) πŸŽ“– *Mechanical Engineer*: Constructora MejΓ­a, Ecuador (2000-2002) πŸ’Ό– *Toolmaker*: Universidad PolitΓ©cnica Salesiana, Ecuador (2002-2010)

πŸ”¬ Research Interests

– *Sustainable materials*: Luis Marcelo’s research focuses on the development of sustainable materials and processes, with a particular emphasis on natural fibers and polymeric composites 🌿.- *Mechanical engineering*: His research also explores mechanical engineering applications, including design, simulation, and testing of mechanical systems πŸ”§.

πŸ… Awards

– *Winner of the Banco de Ideas 2015*: With the project PGWood, Luis Marcelo was awarded the first seed capital for entrepreneurs and innovators πŸ†.- *Researcher in the GiMaT research group*: Luis Marcelo is a member of the research group in new materials and transformation processes at the Universidad PolitΓ©cnica Salesiana πŸ”.

πŸ“šTop NotedΒ  Publications

– Efficiency of the low-pressure cold plasma in the cleaning of steel sheet for subsequent covering”: Andean Region International Conference, IEEE πŸ“„
– “DeterminaciΓ³n del porcentaje de humedad, solubles e insolubles en agua de la fibra de Carludovica Palmata (Paja Toquilla)”: Ingenius: Revista de Ciencia y TecnologΓ­a πŸ“„
– “Characterization of the state planar orientation for short natural fiber in polymeric composites by means of the tensor orientation”: 5th International Conference on Advanced Materials and Systems (ICAMS) πŸ“„
– “Experimental evaluation and simulation of volumetric shrinkage and warpage on polymeric composite short natural fibers reinforced injection molded”: Frontiers of Mechanical Engineering πŸ“„.

 

Conclusion

Luis Marcelo LΓ³pez LΓ³pez’s impressive research experience, strong publication record, and teaching experience make him a strong candidate for the Best Researcher Award. With some further emphasis on interdisciplinary collaboration and international publications, Luis Marcelo could further solidify his position as a leading researcher in his field.

ERHAN BAYSAL | Mechanical Engineering | Best Researcher Award

Mr. ERHAN BAYSAL |Β  Mechanical Engineering | Best Researcher Award

Lecturer at Laser Research Centre, Zonguldak Bülent Ecevit Üniversitesi, China

Erhan Baysal is a Lecturer at BΓΌlent Ecevit University, specializing in Mechanical Engineering. With a strong background in materials science and manufacturing processes, particularly in friction welding, he has contributed to numerous academic publications. His academic journey spans various prestigious institutions, and he actively participates in research and academic projects related to material behavior, mechanical design, and welding technologies. πŸ“šπŸ”§πŸ‘¨β€πŸ«

Profile

scholar

Education πŸŽ“

Master’s in Mechanical Engineering, BΓΌlent Ecevit University, 2019 πŸŽ“Bachelor’s in Mechanical Engineering, FΔ±rat University, 2013

Experience πŸ«πŸ’»

Lecturer, BΓΌlent Ecevit University, 2016–present πŸŽ“Researcher in national projects on manufacturing processes πŸ› οΈInstructor in various courses including Strength of Materials and Manufacturing Processes

Awards and Honors πŸ†

Contributor to several peer-reviewed articles in international journalsPublished in prestigious conferences and journals on materials and welding technologies πŸ“‘Awarded for his contribution to applied research in friction welding and mechanical design 🌍

Research FocusπŸ”¬πŸ”©

Erhan Baysal’s research focuses on materials science, particularly the mechanical behavior and welding of aluminum alloys using friction stir welding. He also explores deformation processes in material shaping and manufacturing optimization.

PublicationΒ  Top Notes

An Overview of Deformation Path Shapes on Equal Channel Angular Pressing” (2022)

Authors: E. Baysal, O. KoΓ§ar, E. Kocaman, U. KΓΆklΓΌ

Journal: Metals 12 (11), 1800

Summary: This paper discusses the deformation paths formed during equal channel angular pressing (ECAP). The study focuses on how different processing parameters, such as the angle of the channels, affect the microstructure and mechanical properties of the material.

“Mechanical Behavior of a Friction Welded AA6013/AA7075 Beam” (2022)

Authors: O. KoΓ§ar, M. Yetmez, E. Baysal, H.A. Ozyigit

Journal: Materials Testing 64 (2), 284-293

Summary: This research investigates the mechanical properties of beams made from AA6013 and AA7075 aluminum alloys joined via friction welding. The study examines the mechanical behavior of the weld joint, focusing on parameters such as strength, hardness, and fracture toughness.

“A New Approach in Part Design for Friction Stir Welding of 3D-Printed Parts with Different Infill Ratios and Colors” (2024)

Authors: O. KoΓ§ar, N. AnaΓ§, E. Baysal

Journal: Polymers 16 (13), 1790

Summary: This paper introduces a novel approach to part design for friction stir welding (FSW) of 3D-printed parts. The study evaluates how different infill ratios and colors in 3D printing affect the welding process, quality, and mechanical properties of the final product.

“Eşit KanallΔ± AΓ§Δ±sal Presleme YΓΆnteminde Kanal AΓ§Δ±larΔ±nΔ±n ve Δ°Γ§ Kâşe Kavisinin Deformasyona Etkisinin Sonlu Elemanlar Metodu ile Δ°ncelenmesi” (2023)

Authors: E. Baysal, O. KoΓ§ar, N. AnaΓ§, F. DarΔ±cΔ±

Journal: Γ‡ukurova Üniversitesi MΓΌhendislik FakΓΌltesi Dergisi 38 (3), 859-873

Summary: This paper investigates the effect of channel angles and inner corner radii on deformation during equal channel angular pressing (ECAP) using finite element method (FEM) simulations. The research provides insights into how these factors influence material flow and structural integrity.

“GΓΆrΓΌntΓΌ İşleme Teknikleri ile Rulo Sac Hassas Doğrultmada Silindir KonumlarΔ±nΔ±n Belirlenmesi” (2021)

Authors: O. KoΓ§ar, S. Dikici, H. UΓ§ar, E. Baysal

Journal: El-Cezeri 8 (2), 604-617

Summary: This article explores the use of image processing techniques to determine the cylinder positions in precision flattening of rolled sheets. The study demonstrates how computer vision can enhance manufacturing processes, particularly in achieving high precision in material deformation.

“3B YazΔ±cΔ±da Üretilen PlakalarΔ±n SΓΌrtΓΌnme KarıştΔ±rma Kaynak Parametrelerinin YSA ile Tahmini” (2024)

Authors: N. AnaΓ§, O. KoΓ§ar, E. Baysal

Journal: Niğde Γ–mer Halisdemir Üniversitesi MΓΌhendislik Bilimleri Dergisi 13 (1), 176-187

Summary: This paper presents a prediction model using artificial neural networks (ANN) to estimate the parameters for friction stir welding of 3D-printed plates. The research focuses on optimizing welding conditions to improve the quality and strength of the welded joints.

“Etial 180 AlaşımΔ±na Δ°lave Edilen BakΔ±rΔ±n MikroyapΔ±, Sertlik ve Korozyon Üzerindeki Etkisi” (2023)

Authors: E. Kocaman, E. Baysal, O. Koçar, A.S. Güldibi, S. Şirin

Journal: Niğde Γ–mer Halisdemir Üniversitesi MΓΌhendislik Bilimleri Dergisi 12 (2), 604-611

Summary: This study investigates the impact of adding copper to Etial 180 alloy, focusing on its effect on microstructure, hardness, and corrosion resistance. The findings highlight the potential improvements in material properties when copper is incorporated into the alloy.

“Barkhausen Noise as A Magnetic Nondestructive Testing Technique”

Authors: Γ–. Adanur, O. KoΓ§ar, A.S. GΓΌldibi, E. Kocaman, E. Baysal

Journal: Black Sea Journal of Engineering and Science 7 (4), 7-8

Summary: The paper explores the use of Barkhausen noise as a nondestructive testing (NDT) technique to assess the magnetic properties of materials. This method is useful in evaluating the integrity and structural health of components without causing damage.

“AA6013/AA7075 AlΓΌminyum Malzemelerin SΓΌrtΓΌnme Kaynağı YΓΆntemiyle Birleştirilmesi ve Analizi”

Authors: E. Baysal, O. KoΓ§ar, M. Yetmez, H.A. Ozyigit

Summary: This research focuses on the friction stir welding (FSW) of AA6013 and AA7075 aluminum alloys, analyzing the mechanical properties, microstructure, and joint quality achieved by this welding method.

Conclusion

Erhan Baysal has shown exceptional dedication to advancing mechanical engineering through his research and teaching. His focus on cutting-edge manufacturing technologies, coupled with his broad publication history, makes him a strong candidate for the Best Researcher Award. With further interdisciplinary integration and industry collaborations, he could significantly elevate the practical applications of his research, solidifying his role as a leading figure in the field. His ongoing work promises to continue shaping the future of mechanical engineering.

Abid Afsan Hamid | Engineering | Best Researcher Award

Mr. Abid Afsan Hamid | Engineering | Best Researcher Award

Part Time Lecturer at Khulna University, Bangladesh

Abid Afsan Hamid is a passionate and dedicated scholar from Jashore, Bangladesh. Born on July 10, 1999, he is currently pursuing his MSc in Computer Science and Engineering at Khulna University, where he maintains a perfect CGPA of 4.00. Abid is known for his quick learning abilities and thrives under pressure, making him a valuable asset in any research team. His research interests lie in artificial intelligence and software engineering, particularly focusing on software evolution and maintenance. With a solid academic foundation, he aims to contribute significantly to the field of computer science.

Publication Profile

scholar

EducationπŸ“š

Abid completed his BSc in Computer Science and Engineering at Khulna University, graduating with distinction and a CGPA of 3.86. He is currently pursuing an MSc at the same institution, achieving a remarkable CGPA of 4.00 over two terms. Prior to his university education, Abid excelled in his Higher Secondary Certificate (HSC) with a GPA of 5.00 and similarly achieved a GPA of 5.00 in his Secondary School Certificate (SSC). His strong academic performance reflects his dedication and commitment to his studies.

Experience πŸ’ΌπŸ”

Abid has significant research experience through his undergraduate and graduate theses. His undergraduate thesis focused on software engineering, proposing a Composite Ranking mechanism for co-change candidates using programmer sensitivity. In his graduate thesis, he improved the suggestion-making accuracy of the FLeCCS technique by integrating semantics, resulting in a new model called iFLeCCS. Abid’s hands-on approach to research has equipped him with practical skills in software development and analysis, making him proficient in addressing real-world software challenges.

Awards and HonorsπŸ†

Abid has consistently demonstrated academic excellence throughout his educational journey, earning recognition for his outstanding performance. His distinction in the BSc program at Khulna University is a testament to his hard work and dedication. Additionally, his contributions to software engineering research have been acknowledged by his professors and peers, further establishing his reputation as an emerging talent in the field. Abid’s commitment to continuous learning positions him for future accolades and achievements. πŸ…πŸŽ–οΈ

Research FocusπŸ€–πŸ’»

Abid’s research interests lie primarily in artificial intelligence and software engineering, with a particular focus on software evolution and maintenance. His work aims to enhance software systems’ adaptability and functionality through innovative methodologies, such as the development of the iFLeCCS model. By combining theoretical insights with practical applications, Abid seeks to contribute to advancements in the field of software engineering, ultimately improving the efficiency and reliability of software systems.

PublicationΒ  Top Notes

Title: Ranking co-change candidates suggested by FLeCCS using programmer sensitivity

Authors: AA Hamid, MF Haque, M Mondal

Journal: Science of Computer Programming

Volume: 240

Article Number: 103216

Year of Publication: 2025

Conclusion

Abid Afsan Hamid demonstrates significant promise as a researcher in the field of computer science and engineering. His academic excellence, coupled with innovative research in software engineering, positions him as a strong candidate for the Best Researcher Award. While there are areas for improvement, particularly in expanding his research experience and publication record, his commitment to continuous learning and impressive academic achievements strongly support his candidacy. With further development and broader engagement in the research community, Abid is poised to make impactful contributions to the field of computer science.

Mr. Yongbiao Mu | Lithium ion batteries | Best Researcher Award

Mr. Yongbiao Mu | Lithium ion batteries | Best Researcher Award

PhD student of Medicine at Southern University of Science and Technology, China

Ph.D. in Material Science and Engineering (2021 – 2025) Southern University of Science and Technology (SUSTech), China Research Focus: Lithium/Zinc metal battery anodes, solid-state electrolytes, interface characterization.

Publication Profile

scholar

Education:

Ph.D. in Material Science and Engineering (2021 – 2025) Southern University of Science and Technology (SUSTech), China Research Focus: Lithium/Zinc metal battery anodes, solid-state electrolytes, interface characterization. M.S. in Materials Engineering (2016 – 2019) Harbin Institute of Technology (HIT), China Research Focus: Electrospun carbon nanofibers, CVD-grown vertically aligned graphene, lithium-ion battery anodes. B.S. in Water Quality Science and Technology (2004 – 2008) Nanjing Tech University, China Research Focus: Membrane materials, metal corrosion, and protection.

Work Experience:

Research Assistant (Mar. 2021 – Sep. 2021) Department of Mechanical and Energy Engineering, SUSTech, China. Engineer (Jan. 2019 – Mar. 2021) Materials Laboratory of Songshan Lake, Institute of Physics, Chinese Academy of Sciences, China.

Awards & Scholarships:

2023 National Scholarship for Ph.D. Students2023 Outstanding Graduate Student Model, SUSTech2023 Academic Star, SUSTech2022 Academic Star, SUSTech

Research Interests:

Key materials for secondary batteries (Lithium/Zinc metal anodes, solid-state electrolytes, high-energy-density silicon-carbon anodes).Advanced electrochemical characterizations (in-situ XRD, Raman, TEM, Aberration-Corrected EM, Cryo-EM). 

PublicationΒ  Top Notes

Graphene/MoS2/FeCoNi(OH)x and Graphene/MoS2/FeCoNiPx multilayer-stacked vertical nanosheets on carbon fibers for highly efficient overall water splitting

Authors: X. Ji, Y. Lin, J. Zeng, Z. Ren, Z. Lin, Y. Mu, Y. Qiu, J. Yu

Journal: Nature Communications, 2021

DOI: 10.1038/s41467-021-21735-3

Summary: This study presents the synthesis of vertical nanosheets composed of graphene, MoS2, and FeCoNi hydroxides/phosphides on carbon fibers. The engineered structure exhibits high catalytic activity for overall water splitting due to enhanced charge transfer properties and effective electrocatalytic performance.

2. A flexible, electrochromic, rechargeable Zn//PPy battery with a short circuit chromatic warning function

Authors: J. Wang, J. Liu, M. Hu, J. Zeng, Y. Mu, Y. Guo, J. Yu, X. Ma, Y. Qiu, Y. Huang

Journal: Journal of Materials Chemistry A, 2018

DOI: 10.1039/C8TA03155A

Summary: The research introduces a flexible Zn/PPy (polypyrrole) battery that features an electrochromic property allowing for a visual warning in case of a short circuit. This advancement improves battery safety and usability while maintaining high electrochemical performance.

3. 3D hierarchical graphene matrices enable stable Zn anodes for aqueous Zn batteries

Authors: Y. Mu, Z. Li, B. Wu, H. Huang, F. Wu, Y. Chu, L. Zou, M. Yang, J. He, L. Ye

Journal: Nature Communications, 2023

DOI: 10.1038/s41467-023-41448-0

Summary: This paper discusses the development of 3D hierarchical graphene matrices that significantly improve the stability of Zn anodes in aqueous Zn batteries, addressing issues of dendrite formation and enhancing cycling performance.

4. Growing vertical graphene sheets on natural graphite for fast charging lithium-ion batteries

Authors: Y. Mu, M. Han, J. Li, J. Liang, J. Yu

Journal: Carbon, 2021

DOI: 10.1016/j.carbon.2021.03.045

Summary: The authors present a method for growing vertical graphene sheets on natural graphite, which enhances the fast charging capability of lithium-ion batteries. The novel structure aids in improved lithium ion transport and cycling stability.

5. Nitrogen, oxygen‐codoped vertical graphene arrays coated 3D flexible carbon nanofibers with high silicon content as an ultrastable anode for superior lithium storage

Authors: Y. Mu, M. Han, B. Wu, Y. Wang, Z. Li, J. Li, Z. Li, S. Wang, J. Wan, L. Zeng

Journal: Advanced Science, 2022

DOI: 10.1002/advs.202104685

Summary: This study explores a novel anode design combining nitrogen and oxygen-doped vertical graphene arrays with high silicon content, resulting in improved lithium storage performance and stability.

6. Vertical graphene growth on uniformly dispersed sub-nanoscale SiO x/N-doped carbon composite microspheres with a 3D conductive network

Authors: M. Han, Y. Mu, F. Yuan, J. Liang, T. Jiang, X. Bai, J. Yu

Journal: Journal of Materials Chemistry A, 2020

DOI: 10.1039/C9TA12253F

Summary: The paper details the growth of vertical graphene on a novel composite microsphere structure, achieving enhanced conductivity and mechanical stability suitable for energy storage applications.

7. High zinc utilization aqueous zinc ion batteries enabled by 3D printed graphene arrays

Authors: B. Wu, B. Guo, Y. Chen, Y. Mu, H. Qu, M. Lin, J. Bai, T. Zhao, L. Zeng

Journal: Energy Storage Materials, 2023

DOI: 10.1016/j.ensm.2023.01.001

Summary: The authors report on a 3D printing technique to create graphene arrays, significantly improving zinc utilization in aqueous zinc-ion batteries while ensuring long-term cycling stability.

8. Growth of flexible and porous surface layers of vertical graphene sheets for accommodating huge volume change of silicon in lithium-ion battery anodes

Authors: M. Han, Z. Lin, X. Ji, Y. Mu, J. Li, J. Yu

Journal: Materials Today Energy, 2020

DOI: 10.1016/j.mten.2020.100445

Summary: This research focuses on creating flexible, porous vertical graphene layers that effectively manage the volume changes of silicon during cycling in lithium-ion batteries, thereby enhancing the durability of anodes.

9. Reconstruction of thiospinel to active sites and spin channels for water oxidation

Authors: T. Wu, Y. Sun, X. Ren, J. Wang, J. Song, Y. Pan, Y. Mu, J. Zhang, Q. Cheng, …

Journal: Advanced Materials, 2023

DOI: 10.1002/adma.202207041

Summary: This study investigates the transformation of thiospinel compounds into active sites for efficient water oxidation, contributing to advancements in photocatalytic water splitting technologies.

10. Oriented construction of efficient intrinsic proton transport pathways in MOF-808

Authors: X.M. Li, Y. Wang, Y. Mu, J. Gao, L. Zeng

Journal: Journal of Materials Chemistry A, 2022

DOI: 10.1039/D2TA02878K

Summary: This paper presents a method for constructing proton transport pathways in metal-organic frameworks (MOF-808), enhancing their efficiency in proton conduction applications.

11. Thermodynamically Stable Dual‐Modified LiF&FeF3 layer Empowering Ni‐Rich Cathodes with Superior Cyclabilities

Authors: Y. Chu, Y. Mu, L. Zou, Y. Hu, J. Cheng, B. Wu, M. Han, S. Xi, Q. Zhang, L. Zeng

Journal: Advanced Materials, 2023

DOI: 10.1002/adma.202212308

Summary: This research investigates a dual-modification approach to improve the stability and cyclability of Ni-rich cathodes, critical for advancing lithium-ion battery performance.

12. Flexible electrospun carbon nanofibers/silicone composite films for electromagnetic interference shielding, electrothermal and photothermal applications

Authors: Z. Li, Z. Lin, M. Han, Y. Mu, P. Yu, Y. Zhang, J. Yu

Journal: Chemical Engineering Journal, 2021

DOI: 10.1016/j.cej.2020.129826

Summary: The authors develop flexible composite films from electrospun carbon nanofibers and silicone, showcasing effective electromagnetic interference shielding and promising applications in electrothermal and photothermal technologies.

13. Recent advances in the anode catalyst layer for proton exchange membrane fuel cells

Authors: Z. Li, Y. Wang, Y. Mu, B. Wu, Y. Jiang, L. Zeng, T. Zhao

Journal: Renewable and Sustainable Energy Reviews, 2023

DOI: 10.1016/j.rser.2023.113182

Summary: This review summarizes recent advancements in anode catalyst layers for proton exchange membrane fuel cells, highlighting the materials and strategies that enhance performance.

14. High yield production of 3D graphene powders by thermal chemical vapor deposition and application as highly efficient conductive additive of lithium ion battery electrodes

Authors: X. Ji, Y. Mu, J. Liang, T. Jiang, J. Zeng, Z. Lin, Y. Lin, J. Yu

Journal: Carbon, 2021

DOI: 10.1016/j.carbon.2021.01.059

Summary: The authors present a method for producing 3D graphene powders via thermal chemical vapor deposition, which serve as highly efficient conductive additives in lithium-ion battery electrodes, enhancing electrochemical performance.

 

Marwa BEN SAID-ROMDHANE | GΓ©nie Electrique | Best Researcher Award

Assist Prof Dr. Marwa BEN SAID-ROMDHANE | GΓ©nie Electrique | Best Researcher Award

Professor of Medicine at Ecole Nationale d’IngΓ©nieurs de Tunis, Tunisia

A. Sayah is an accomplished Associate Professor at ISSAT Gabès, Tunisia, specializing in electrical engineering. With a strong academic background and significant research contributions, they are dedicated to advancing sustainable energy solutions. Their innovative work spans solar power systems and electric vehicles, making a notable impact in the field.

Publication Profile

scholar

EducationπŸŽ“Β 

Education: Ph.D. in Electrical Engineering (2012-2016) from ENIT, UTM, Tunisia, with a thesis focused on robust grid-connected converters. Previously earned an M.Sc. in Electrical Systems (2011-2012) and a B.Sc. in Electrical Engineering (2008-2011) from the same institution, showcasing a solid foundation in electrical engineering principles. πŸ“š

ExperienceπŸ› οΈΒ 

Experience: Serving as an Associate Professor since 2020 at ISSAT GabΓ¨s, with prior positions at ENIT, UTM, and Ecole Nationale d’IngΓ©nieurs de Carthage. They have also contributed as a Postdoctoral Researcher at LSE, enhancing their expertise in electrical energy applications and systems. πŸ‘¨β€πŸ«

Awards and HonorsπŸ†Β 

Awards and Honors: Recipient of the 2023 SSHN award for high-level research stays and multiple excellence scholarships from the ENIT Doctoral School in 2016 and 2017. Additionally, they hold fellowships from UniversitΓ© de Tunis El Manar and serve on the scientific committee of key conferences. πŸ₯‡

Research FocusπŸ”Β 

Research Focus: Their research primarily revolves around optimizing power systems in renewable energy applications, specifically focusing on solar-powered electric vehicles and microgrid technology. They strive to enhance power quality and energy efficiency, contributing to sustainable energy solutions in Tunisia and beyond. πŸŒžπŸ”‹

 

PublicationΒ  Top Notes

 

  • Robust Active Damping Methods for LCL Filter-Based Grid-Connected Converters
    • Authors: M.B. SaΓ―d-Romdhane, M.W. Naouar, I. Slama-Belkhodja, E. Monmasson
    • Journal: IEEE Transactions on Power Electronics
    • Volume: 32
    • Issue: 9
    • Pages: 6739-6750
    • Year: 2016
    • Citations: 151
  • An Improved LCL Filter Design to Ensure Stability Without Damping and Despite Large Grid Impedance Variations
    • Authors: M.B. Said-Romdhane, M.W. Naouar, I. Slama-Belkhodja, E. Monmasson
    • Journal: Energies
    • Volume: 10
    • Issue: 3
    • Article: 336
    • Year: 2017
    • Citations: 106
  • Simple and Systematic LCL Filter Design for Three-Phase Grid-Connected Power Converters
    • Authors: M.B. Said-Romdhane, M.W. Naouar, I.S. Belkhodja, E. Monmasson
    • Journal: Mathematics and Computers in Simulation
    • Volume: 130
    • Pages: 181-193
    • Year: 2016
    • Citations: 73
  • A Review on Vehicle-Integrated Photovoltaic Panels
    • Authors: M. Ben Said-Romdhane, S. Skander-Mustapha
    • Book: Advanced Technologies for Solar Photovoltaics Energy Systems
    • Pages: 349-370
    • Year: 2021
    • Citations: 21
  • Grid Emulator for Small Scale Distributed Energy Generation Laboratory
    • Authors: S. Skander-Mustapha, M.J.B. Ghorbal, M.B. Said-Romdhane, M. Miladi, …
    • Journal: Sustainable Cities and Society
    • Volume: 43
    • Pages: 325-338
    • Year: 2018
    • Citations: 16
  • Time Delay Consideration for Robust Capacitor-Current-Inner-Loop Active Damping of LCL-Filter-Based Grid-Connected Converters
    • Authors: M.B. SaΓ―d-Romdhane, M.W. Naouar, I. Slama-Belkhodja, E. Monmasson
    • Journal: International Journal of Electrical Power & Energy Systems
    • Volume: 95
    • Pages: 177-187
    • Year: 2018
    • Citations: 14
  • Analysis Study of City Obstacles Shading Impact on Solar PV Vehicle
    • Authors: M.B. Said-Romdhane, S. Skander-Mustapha, I. Slama-Belkhodja
    • Conference: 2021 4th International Symposium on Advanced Electrical and Communication …
    • Year: 2021
    • Citations: 7
  • Systematic Design Method for PI Controller with Virtual Resistor-Based Active Damping of LCL Filter
    • Authors: M.B. SaΓ―d-Romdhane, M.W. Naouar, I. Slama-Belkhodja
    • Journal: Global Energy Interconnection
    • Volume: 1
    • Issue: 3
    • Pages: 319-329
    • Year: 2018
    • Citations: 7
  • Adaptive Deadbeat Predictive Control for PMSM-Based Solar-Powered Electric Vehicles with Enhanced Stator Resistance Compensation
    • Authors: M.B. Said-Romdhane, S. Skander-Mustapha, R. Belhassen
    • Journal: Science and Technology for Energy Transition
    • Volume: 78
    • Pages: 35
    • Year: 2023
    • Citations: 4
  • Indirect Sliding Mode Power Control Associated with Virtual-Resistor-Based Active Damping Method for LLCL-Filter-Based Grid-Connected Converters
    • Authors: M.B. SaΓ―d-Romdhane, M.W. Naouar, I. Slama-Belkhodja, E. Monmasson
    • Journal: International Journal of Renewable Energy Research
    • Volume: 7
    • Issue: 3
    • Pages: 1155-1165
    • Year: 2017
    • Citations: 4
  • Enhanced Real-Time Impedance Emulation for Microgrid Equipment Testing and Applications
    • Authors: I.S.B. M. Ben Said-Romdhane, S. Skander-Mustapha
    • Conference: International Renewable Energy Congress
    • Year: 2019
    • Citations: 2

Conclusion

The individual is a strong candidate for the Best Researcher Award, with a robust educational foundation, impressive research contributions, a commendable publication record, and significant professional engagement. Their focus on sustainable solutions in electrical engineering aligns well with contemporary challenges, making their work highly relevant. By addressing areas for improvement, such as enhancing collaboration and visibility, they could further elevate their impact in the field. Overall, their combination of expertise, innovation, and commitment positions them as a leader worthy of this esteemed recognition.

Mousa Abdollahvand | Antenna engineering | Best Researcher Award

Dr. Mousa Abdollahvand | Antenna engineering | Best Researcher Award

Assistant Professor atMohaghegh Ardabili University, Iran

Mousa Abdollahvand Yajloo, born on 11 September 1984 in Aslandooz, Iran, holds an M.Sc. in Telecommunication Engineering from Shahed University, Tehran, and a Ph.D. in Electrical Engineering from Tarbiat Modares University, Tehran. His primary research interests include frequency selective surfaces (FSS), reconfigurable antennas, RF MEMS, and microwave passive components.

Yajloo is affiliated with prestigious research groups, including the Progress in Electromagnetic Research (PIER), IEEE MTT, and ISTE Springer, contributing as a reviewer. His academic work spans multiple international journals and conferences, with key publications focusing on UWB antennas, frequency band-notch characteristics, and Ka-band reflectarrays. He has also gained experience as a research visitor at Universitaria Politechnical de Madrid (UPM), Spain, where he further developed his expertise in antenna and RF circuit design.

Publication Profile

scholar

Education

Ph.D. in Electrical Engineering (Fields and Waves, Telecommunication), Tarbiat Modares University, Tehran, Iran. Thesis: “Design and Fabrication of Reconfigurable Reflectarray Antenna with Mutual Coupling Reduction.”M.Sc. in Electrical Engineering (Fields and Waves, Telecommunication), Shahed University, Tehran, Iran. Thesis: “Design & Fabrication of Microstrip-Feed Monopole Antenna for UWB Applications.”

Professional Experience

Contributed to projects on the measurement of electromagnetism parameters in the microwave band and the size reduction of microstrip antennas using metamaterials.Notable seminars on topics like Frequency Selective Surfaces and Active Reflectarray Antennas.

PublicationΒ  Top Notes

  • Compact Dual Band-Notched Printed Monopole Antenna for UWB Application
    • Published In: IEEE Antennas and Wireless Propagation Letters
    • Cited By: 211
    • Year: 2010
    • Summary: This paper presents a dual band-notched monopole antenna designed for ultra-wideband (UWB) applications, enhancing the frequency range while minimizing interference.
  • A 20/30 GHz Reflectarray Backed by FSS for Shared Aperture Ku/Ka-Band Satellite Communication Antennas
    • Published In: IEEE Antennas and Wireless Propagation Letters
    • Cited By: 43
    • Year: 2020
    • Summary: The study discusses a dual-frequency reflectarray backed by a frequency-selective surface (FSS) for improved performance in satellite communication systems.
  • Planar Triangular Monopole Antenna with Multioctave Bandwidth
    • Published In: Microwave and Optical Technology Letters
    • Cited By: 20
    • Year: 2011
    • Summary: This research introduces a planar triangular monopole antenna capable of operating over multiple octaves, showcasing its versatility.
  • A Compact UWB Printed Antenna with Bandwidth Enhancement for In-body Microwave Imaging Applications
    • Published In: Progress In Electromagnetics Research C
    • Cited By: 16
    • Year: 2014
    • Summary: The work presents a compact printed antenna designed for in-body imaging, focusing on bandwidth enhancement to support medical applications.
  • Compact Double-Fed Dual Annular Ring Printed Monopole Antenna for UWB Application
    • Published In: Journal of Electromagnetic Waves and Applications
    • Cited By: 15
    • Year: 2009
    • Summary: This article details a dual annular ring antenna structure optimized for UWB applications, emphasizing compactness and performance.
  • Compact Band-Rejection Printed Monopole Antenna for UWB Application
    • Published In: IEICE Electronics Express
    • Cited By: 14
    • Year: 2011
    • Summary: The design of a band-rejection monopole antenna tailored for UWB applications is discussed, highlighting its capability to suppress undesired frequency bands.
  • Design and Demonstration of a Tri-band Frequency Selective Surface for Space Applications in X, K, and Ka Bands
    • Published In: Microwave and Optical Technology Letters
    • Cited By: 11
    • Year: 2020
    • Summary: This paper focuses on a frequency-selective surface designed for use in space applications across multiple bands, demonstrating its operational effectiveness.
  • Single-Layer Dual-Frequency Reflectarray for Ka-band Antennas
    • Published In: 2016 10th European Conference on Antennas and Propagation (EuCAP)
    • Cited By: 11
    • Year: 2016
    • Summary: The research presents a dual-frequency reflectarray antenna with a single-layer design optimized for Ka-band communication.
  • Novel Modified Monopole Antenna with Band-Notch Characteristic for UWB Application
    • Published In: IEICE Electronics Express
    • Cited By: 10
    • Year: 2010
    • Summary: This study introduces a modified monopole antenna featuring a band-notch characteristic, improving UWB application performance.
  • Reconfigurable FSS Based on PIN Diodes for Shared-Aperture X/Ka-Band Antennas
    • Published In: 15th European Conference on Antennas and Propagation (EuCAP)
    • Cited By: 8
    • Year: 2021
    • Summary: The paper discusses a reconfigurable frequency-selective surface utilizing PIN diodes, aimed at enhancing performance in shared-aperture antenna systems.

Conclusion

Mousa Abdollahvand Yajloo is a highly qualified candidate for the Best Researcher Award, supported by his strong educational background, significant research contributions, and active role in the academic community. While there are opportunities for him to enhance his impact through broader applications of his work and increased visibility, his strengths strongly position him as a leader in his field. Recognizing his efforts with this award would not only acknowledge his accomplishments but also inspire further innovation in telecommunications and related disciplines.

Dr. Gia Toai Truong | Structural Analysis | Best Researcher Award

Dr. Gia Toai Truong | Structural Analysis | Best Researcher Award

Dr. Gia Toai Truong, Dong A University, Vietnam

Dr. Gia Toai Truong is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.

 

Professional Profiles:

Google scholar

 

Educational Background

πŸŽ“ Ph.D. in Structural Engineering (03.2016 – 08.2020)
Thesis title: Mechanical and fracture characteristics of carbon fiber reinforced polymer composites incorporating nanomaterials
πŸ“ Soongsil University, Seoul, Korea
πŸ‘¨β€πŸ« Advisor: Prof. Kyoung-Kyu ChoiπŸŽ“ M.S. in Structural Engineering (09.2012 – 08.2014)
Thesis title: Shrinkage and creep behavior of amorphous steel fiber-reinforced concrete
πŸ“ Soongsil University, Seoul, Korea
πŸ‘¨β€πŸ« Advisor: Emeritus Prof. Oan Chul ChoiπŸŽ“ B.S. in Civil Engineering (09.2006 – 05.2011)
Graduation project title: Sunwal tower office building – District 1
πŸ“ Ho Chi Minh City University of Architecture, Ho Chi Minh City, Viet Nam

Working Experience

πŸ‘¨β€πŸ« Lecturer (From 04.2023)
πŸ“ Dong A University, Da Nang, Viet NamπŸ‘¨β€πŸ”¬ Postdoctoral Research Professor (03.2021 – 02.2023)
πŸ“ Seoul National University of Science and Technology (SeoulTech), Seoul, KoreaπŸ”¬ Postdoctoral Researcher (10.2020 – 02.2021)
πŸ“ Soongsil University, Seoul, Korea
πŸ‘¨β€πŸ« Advisor: Prof. Kyoung-Kyu ChoiπŸ‘¨β€πŸ« Lecturer (09.2020)
πŸ“ School of Architecture, Soongsil UniversityπŸ‘¨β€πŸ« Lecturer (09.2014 – 02.2016)
πŸ“ Ho Chi Minh University of Architecture, Ho Chi Minh City, Viet Nam

  • 🏫 Teaching Courses: Construction Technology, Geodesy (Practice)
  • πŸ‘¨β€πŸŽ“ Undergraduate student advisors: Graduate Projects

πŸ‘¨β€πŸ« Assistant Lecturer (06.2011 – 08.2012)
πŸ“ Ho Chi Minh University of Architecture, Ho Chi Minh City, Viet Nam

  • 🏫 Teaching Courses: Technology of Construction, Geodesy (Practice)

πŸ› οΈ Structural Engineer (03.2011 – 05.2011)
πŸ“ Khanh Phat Construction – Designing – Consultant Company Limited – Ho Chi Minh City, Viet Nam

Academic Activities & Services

πŸ“ Reviewer for the following journals:

Journal of Building EngineeringStructuresInternational Journal of Concrete Structures and MaterialsMaterialsPolymersCase Studies in Construction MaterialsTechno Press

Research Experience

πŸ”¬ Seoul National University of Science and Technology (SeoulTech) (03.2021 – 02.2023)Structural analysis and application of machine learning in estimating structural performance of reinforced concrete members and material properties

πŸ“–Β Publications Top Note :

Seismic performance of reinforced concrete columns retrofitted by various methods
πŸ“š GT Truong, JC Kim, KK Choi
Engineering Structures 134, 217-235 (2017)
Citations: 100

Development of extreme gradient boosting model for prediction of punching shear resistance of R/C interior slabs
πŸ“š HD Nguyen, GT Truong, M Shin
Engineering Structures 235, 112067 (2021)
Citations: 67

Seismic performance of exterior RC beam–column joints retrofitted using various retrofit solutions
πŸ“š GT Truong, NH Dinh, JC Kim, KK Choi
International Journal of Concrete Structures and Materials 11, 415-433 (2017)
Citations: 55

Tensile Behavior of Carbon Fiber‐Reinforced Polymer Composites Incorporating Nanomaterials after Exposure to Elevated Temperature
πŸ“š GT Truong, HV Tran, KK Choi
Journal of Nanomaterials 2019 (1), 4139208 (2019)
Citations: 37

Assessment of punching shear strength of FRP-RC slab-column connections using machine learning algorithms
πŸ“š GT Truong, HJ Hwang, CS Kim
Engineering Structures 255, 113898 (2022)
Citations: 36

Tensile behaviors of lap-spliced carbon fiber-textile reinforced mortar composites exposed to high temperature
πŸ“š GT Truong, SH Park, KK Choi
Materials 12 (9), 1512 (2019)
Citations: 22

Punching shear strength of interior concrete slab-column connections reinforced with FRP flexural and shear reinforcement
πŸ“š GT Truong, KK Choi, CS Kim
Journal of Building Engineering 46, 103692 (2022)
Citations: 21

Tensile behavior of hybrid composites of carbon fibersβ€”steel wire mesh reinforced polymer
πŸ“š GT Truong, KK Choi
Mechanics of Advanced Materials and Structures 28 (2), 154-166 (2021)
Citations: 17

Tensile properties of carbon fiber-textile reinforced mortar (TRM) characterized by different anchorage methods
πŸ“š HS Kim, GT Truong, SH Park, KK Choi
International Journal of Concrete Structures and Materials 12, 1-13 (2018)
Citations: 17

Tensile behavior of on-and off-axis carbon fiber reinforced polymer composites incorporating steel wire mesh
πŸ“š GT Truong, H Van Tran, KK Choi
Mechanics of Materials 137, 103131 (2019)
Citations: 16

Buckling analysis of the porous sandwich functionally graded plates resting on Pasternak foundations by Navier solution combined with a new refined quasi-3D hyperbolic shear model
πŸ“š TV Vu, HL Cao, GT Truong, CS Kim
Mechanics Based Design of Structures and Machines 51 (11), 6227-6253 (2023)
Citations: 15

Punching-shear behaviors of RC-column footings with various reinforcement and strengthening details
πŸ“š GT Truong, KK Choi, HS Kim
Engineering Structures 151, 282-296 (2017)
Citations: 14

Mechanical performance and durability of latex-modified fiber-reinforced concrete
πŸ“š GT Truong, MK Son, KK Choi
Journal of Advanced Concrete Technology 17 (2), 79-92 (2019)
Citations: 13

Flexural behavior of RC beams strengthened with NSM GFRP strips after exposed to high temperatures
πŸ“š GT Truong, HH Lee, KK Choi
Engineering Structures 173, 203-215 (2018)
Citations: 13

Seismic behaviors of thin slender structural walls reinforced with amorphous metallic fibers
πŸ“š MS Seo, HS Kim, GT Truong, KK Choi
Engineering Structures 152, 102-115 (2017)
Citations: 13

Seismic performance of lightly shear reinforced RC columns
πŸ“š KK Choi, GT Truong, JC Kim
Engineering Structures 126, 490-504 (2016)
Citations: 13

Effect of short multi-walled carbon nanotubes on the mode I fracture toughness of woven carbon fiber reinforced polymer composites
πŸ“š GT Truong, KK Choi
Construction and Building Materials 259, 119696 (2020)
Citations: 12

Effect of multiwalled carbon nanotubes and electroless copper plating on the tensile behavior of carbon fiber reinforced polymers
πŸ“š GT Truong, J Kim, KK Choi
Advances in Materials Science and Engineering 2018 (1), 8264138 (2018)
Citations: 11

Restrained shrinkage cracking of amorphous metallic fibre-reinforced concrete
πŸ“š KK Choi, GT Truong, SJ Choi
Proceedings of the Institution of Civil Engineers-Structures and Buildings (2015)
Citations: 11

Investigation on mode I fracture toughness of woven carbon fiber-reinforced polymer composites incorporating nanomaterials
πŸ“š GT Truong, HV Tran, KK Choi
Polymers 12 (11), 2512 (2020)
Citations: 9