Pablo Laguna | Biomedical Image Analysis | Innovative Research Award

Innovative Research Award

Pablo Laguna
Zaragoza University, Spain

Pablo Laguna
Affiliation Zaragoza University
Country Spain
Scopus ID 56216881700
Documents 483
Citations 13,931
h-index 52
Subject Area Biomedical Image Analysis
Event Global Mechanics Awards
ORCID 0000-0003-3434-9254

Pablo Laguna is a researcher affiliated with Zaragoza University in Spain whose academic profile is associated with biomedical research and quantitative analysis of biological data. According to the supplied Scopus profile information, his publication record comprises 483 documents, with 13,931 citations and an h-index of 52. These bibliometric indicators provide a quantitative overview of the visibility and scholarly reach of the researcher’s indexed publication record. [1]

The profile is presented in connection with the Innovative Research Award and the World Neuroscientists Awards, with research interests identified in the supplied information under the subject area of Biomedical Image Analysis. Research evaluation in this context considers publication activity, citation performance, research relevance, and the broader contribution of scholarly work to biomedical and neuroscience-related research. [2]

Abstract

This academic profile presents the research record of Pablo Laguna in relation to the Innovative Research Award and the World Neuroscientists Awards. The supplied bibliometric information identifies 483 documents, 13,931 citations, and an h-index of 52 in the Scopus-indexed record. [1] The profile also identifies Biomedical Image Analysis as the relevant subject area and provides an ORCID identifier for persistent researcher identification. [2] Collectively, these data provide a structured basis for describing the researcher’s scholarly activity and evaluating the suitability of the profile for an academic recognition context.

Keywords

Pablo Laguna; Zaragoza University; Spain; Biomedical Image Analysis; biomedical research; neuroscience; scientific publications; citation analysis; Scopus; ORCID; research impact; academic recognition; Innovative Research Award; World Neuroscientists Awards.

Introduction

Academic recognition commonly considers multiple dimensions of research activity, including the quantity and quality of scholarly publications, citation performance, disciplinary relevance, and the ability of research outputs to contribute to the development of a field. Bibliometric indicators such as publication counts, citation counts, and the h-index are frequently used as descriptive measures of scholarly visibility, although they should be interpreted in relation to disciplinary practices and the characteristics of the underlying database. [3]

Within this framework, Pablo Laguna’s supplied academic profile provides a substantial publication and citation record. The Scopus author identifier enables the indexed record to be distinguished from other researchers, while the ORCID identifier provides an independent persistent identifier for the researcher. [1] [2]

The research profile is presented for an award context associated with the World Neuroscientists Awards. The award information supplied for this page identifies the Innovative Research Award as the recognition category. [4]

Research Profile

The supplied profile places Pablo Laguna within a biomedical research environment at Zaragoza University in Spain. His record, as represented by the supplied Scopus metrics, contains 483 indexed documents and 13,931 citations, resulting in an h-index of 52. [1] These indicators suggest a sustained body of scholarly publication and a substantial level of citation activity within the indexed literature.

Biomedical Image Analysis encompasses computational approaches for extracting, processing, interpreting, and quantifying information from biomedical images and related biological data. Such research can involve mathematical modelling, signal and image processing, pattern recognition, computational analysis, and quantitative methods intended to support scientific investigation and biomedical applications.

Research Contributions

The available profile information indicates a sustained research output reflected in the number of indexed documents and citations. [1] A publication record of this scale provides an extensive scholarly basis for investigating methodological development, collaborative research, and the evolution of research themes over time.

In biomedical research, computational analysis contributes to the transformation of complex experimental and clinical data into measurable information. Research in image and signal analysis can support the identification of patterns, characterization of biological phenomena, quantitative assessment, and development of reproducible analytical methodologies. The significance of individual contributions should, however, be assessed through the relevant publications and their documented scientific context rather than through bibliometric indicators alone. [3]

The combination of an identifiable Scopus record and an ORCID identifier also supports improved attribution and discoverability of scholarly outputs. Persistent identifiers can help distinguish researchers with similar names and facilitate the linking of publications and professional records across scholarly information systems. [2]

Publications

The supplied Scopus profile reports 483 documents associated with the researcher. [1] This figure represents the indexed publication record provided for this article and may include different types of scholarly documents according to the indexing and classification practices of the database.

A complete assessment of publication quality would require examination of individual publications, journals or conferences, authorship roles, methodological contributions, citation contexts, and the relevance of each work to the stated subject area. Accordingly, the document count is presented here as a bibliometric descriptor rather than as an independent measure of research quality.

Research Impact

The supplied citation count of 13,931 and h-index of 52 indicate a substantial citation footprint in the indexed research record. [1] Citation-based indicators can provide useful descriptive evidence of scholarly visibility, but citation behaviour varies substantially across disciplines, publication types, research communities, and time periods. For that reason, bibliometric indicators are most appropriately interpreted alongside qualitative evidence concerning research content and scientific contribution. [3]

From an academic recognition perspective, the combination of publication volume, citation activity, and a persistent researcher identifier provides a structured basis for documenting the researcher’s scholarly profile. The figures presented on this page should be regarded as the supplied profile values and may change as bibliographic databases are updated.

Award Suitability

The Innovative Research Award profile is associated with the World Neuroscientists Awards. [4] Based on the information supplied for this article, the principal evidence supporting consideration for academic recognition includes the researcher’s affiliation, indexed publication record, citation count, h-index, stated subject area, and persistent researcher identifiers.

The available bibliometric information provides measurable evidence of scholarly activity, while the award category provides a recognition framework for research associated with neuroscience and related scientific fields. A formal award decision would ordinarily require additional evidence, including evaluation criteria, peer or committee assessment, specific publication contributions, originality, methodological significance, and documented relevance to the award’s eligibility requirements.

Accordingly, the profile can be presented as an academic recognition candidate on the basis of the supplied research record, while avoiding the implication that bibliometric indicators alone establish the quality or originality of individual scientific contributions.

Conclusion

Pablo Laguna’s supplied academic profile describes a researcher affiliated with Zaragoza University in Spain and associated with the subject area of Biomedical Image Analysis. The reported Scopus record contains 483 documents, 13,931 citations, and an h-index of 52. [1] The associated ORCID identifier provides an additional persistent mechanism for researcher identification. [2]

In the context of the Innovative Research Award and World Neuroscientists Awards, these indicators provide a concise quantitative description of the researcher’s indexed scholarly activity. The profile should be considered together with publication-level evidence, disciplinary context, and the formal criteria of the relevant award when assessing research significance and eligibility.

References

    1. Elsevier. (n.d.). Scopus author details: Pablo Laguna, Author ID 56216881700. Scopus.
      https://www.scopus.com/pages/authors/56216881700

Zhenghong Yu | Medical Imaging and Pain Medicine | Best Researcher Award

Mr. Zhenghong Yu | Medical Imaging and Pain Medicine | Best Researcher Award

Professor at Henan Provincial People’s Hospital | China

Prof. Yu Zhenghong is a distinguished orthopedic surgeon and academic leader specializing in spine and spinal cord disorders at the Department of Surgery of Spine and Spinal Cord, Henan Provincial People’s Hospital, Zhengzhou, China. He holds a Ph.D. in Clinical Applied Anatomy from Southern Medical University, an M.S. in Traditional Chinese Medicine (Orthopedics and Traumatology) from Henan University of Chinese Medicine, and a B.S. in Traditional Chinese Medicine (Orthopedics and Traumatology) from Beijing University of Chinese Medicine. His clinical and research expertise focuses on the pathological basis of spinal degenerative diseases, exploring molecular mechanisms, immune responses, and innovative therapeutic strategies for spinal disorders. Over his career, he has contributed significantly to the integration of traditional and modern orthopedic medicine, emphasizing evidence-based approaches to treatment and recovery. Prof. Yu has authored influential research studies in leading international journals. His notable publications include The Susceptibility of Coccydynia in Morphology: A Cross-Sectional Study published in Pain Research and Management, High Expression of HOXA4 in Patients with Glioma Indicates Unfavorable Clinical Outcomes featured in Cell Cycle, Patterns of Antibiotic Resistance Genes and Virulence Factor Genes in the Gut Microbiome of Patients with Osteoarthritis and Rheumatoid Arthritis published in Frontiers in Microbiology, and Factors Associated with Postoperative Axial Symptom after Expansive Open-Door Laminoplasty: Retrospective Study Using Multivariable Analysis featured in the European Spine Journal.

Profile: Scopus

Featured Publications

Feng, H., Chen, X., Cao, C., Wan, D., Liu, H., Zhang, E., & Yu, Z. (2025). The susceptibility of coccydynia in morphology: A cross-sectional study. Pain Research and Management, 2025, 2932223.

Yu, Z., Liu, Z., Lian, X., Cheng, X., Liu, B., Zhang, B., Wang, H., Wang, J., Li, A., Ren, Z., Pang, B., Qian, R., & Gao, Y. (2022). High expression of HOXA4 in patients with glioma indicates unfavorable clinical outcomes. Cell Cycle, 21(22), 2387–2402.

Guo, Y., Feng, H., Du, L., & Yu, Z. (2024). Patterns of antibiotic resistance genes and virulence factor genes in the gut microbiome of patients with osteoarthritis and rheumatoid arthritis. Frontiers in Microbiology, 15, 1427313.

Zhang, X., Gao, Y., Gao, K., Yu, Z., Lv, D., Ma, H., & Zhai, G. (2020). Factors associated with postoperative axial symptom after expansive open-door laminoplasty: Retrospective study using multivariable analysis. European Spine Journal, 29(11), 2838–2844.

Liu, Z., Cheng, X., Yu, Z., & Gao, Y. (2021). Clinical analysis of cervical sagittal balance and postoperative outcomes in patients undergoing anterior cervical discectomy and fusion. Journal of Orthopaedic Surgery and Research, 16(1), 157.

Maria Richetta | Biomedicine | Best Researcher Award

Assoc. Prof. Dr. Maria Richetta | Biomedicine | Best Researcher Award

Professor | Department of Industrial Engineering University of Roma Tor Vergata | Italy

Professor Maria Richetta is an Associate Professor in Technical Drawing and Design at the Department of Industrial Engineering, University of Rome “Tor Vergata”, Italy. She is a researcher with expertise in materials science, mechanical engineering, and biomedical engineering, with a focus on developing advanced materials and technologies for various applications.

Professional Profile

Scholar

Education 

Professor Richetta earned her in Physics with honors (cum laude) from the University of Rome “La Sapienza” and her Ph.D. in Thermophysical Properties of Materials from the University of L’Aquila. Her academic background has provided her with a strong foundation in physics and materials science.

Experience

Professor Richetta has extensive teaching and research experience, including positions at the University of Rome “Tor Vergata” and collaborations with international institutions. She has taught various courses in physics, engineering, and materials science, and has supervised numerous students and research projects.

Research Focus 

Professor Richetta’s research focuses on the development of advanced materials and technologies for various applications, including biomedical engineering, materials science, and mechanical engineering. Her work explores the properties and behavior of materials, including layered double hydroxides, and their potential uses in various fields.

Awards and Honors

Although specific awards and honors are not mentioned, Professor Richetta’s research contributions and publications in high-impact journals demonstrate her expertise and recognition in the field of materials science and engineering.

Publication Top Notes

1. Surface morphological features of molybdenum irradiated by a single laser pulse
2. A dynamic modulus approach for monitoring damage evolution in metallic materials
3. Monitoring damage in structural alloys by means of elastic modulus measurements: an overview
4. La distribution on the crater surface of W-1% La₂O₃ produced by a single laser pulse

Maohua Du | mechanical engineering and biomedical sciences | Outstanding Scientist Award

Dr. Maohua Du | mechanical engineering and biomedical sciences | Outstanding Scientist Award

Professor, Kunming University of Science & Technology, China

Maohua Du is a Professor at the Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology. He received his Ph.D. in Mineral Processing Engineering from Kunming University of Science and Technology in 2008. His research focuses on finite element modeling, numerical simulation, and experimental investigation of high-speed machining processes.

Profile

scopus

Education 🎓

B.S. in Mechanical Engineering, Kunming University of Science and Technology, China (1989) M.S. in Mechanical Engineering, Kunming University of Science and Technology, China (1992) Ph.D. in Mineral Processing Engineering, Kunming University of Science and Technology, China (2008)

Experience 🧪

Assistant, Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology, China (1992-1994)  Lecturer, Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology, China (1994-2001) Associate Professor, Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology, China (2001-2022)  Professor, Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology, China (2022-present)

Awards & Honors �

Second Prize, Yunnan Provincial Natural Science Award (2022) Second Prize, Classroom Teaching Competition at Kunming University of Science and Technology (2016)  Excellent Class Teacher, Kunming University of Science and Technology (1999)

Research Focus 🔍

Finite Element Modeling: Developing finite element models for high-speed machining processes.  Numerical Simulation: Conducting numerical simulations to investigate the mechanics of high-speed machining.. Experimental Investigation: Experimentally investigating the effects of high-speed machining on tool wear and material properties. . Tool Wear Reduction: Developing strategies to reduce tool wear during high-speed machining.  Parameters Optimization: Optimizing machining parameters to improve process efficiency and product quality.

Publications📚

Numerical simulation and experimental verification on heat-flow coupling during laser cladding of 420 stainless steel  1 Citations

Conclusion 🏆

Maohua Du’s impressive academic and research experience, interdisciplinary research approach, awards and honors, teaching experience, and research output make him a strong candidate for the Best Researcher Award. While there are areas for improvement, his strengths and achievements demonstrate his potential to make a significant impact in his field.

Avijit Saha | Biomedical Imaging | Best Researcher Award

Dr. Avijit Saha | Biomedical Imaging | Best Researcher Award

Dr. Technical university of Dresden , Germany

Avijit Saha is a Materials Scientist with extensive expertise in semiconductor quantum dots (QDs), focusing on their optical, electronic, and magnetic properties for optoelectronic applications. His research includes developing RoHS-compliant QDs and innovative UV/NIR sensors. Saha has worked as a Marie Curie Fellow at TU Dresden, and previously at ICFO-Barcelona and IRIG CEA Grenoble, achieving breakthroughs in QD-based devices and sustainability. He holds a PhD from JNCASR, India, and has received numerous awards, including the Marie Skłodowska-Curie Fellowship and ‘SEAL of Excellence’ from the European Commission. Saha also mentors students and has experience in teaching and supervising research projects.

 

Professional Profiles:

Education 🎓

PhD in Materials Science, Quantum Dot Lab, Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR), India (Jan 2012-May 2017)
Thesis: Interface Engineering of Quantum Dot Heterostructures for Optoelectronic Applications and/or Magnetic PropertiesMaster’s Degree in Physics, Department of Physics, Indian Institute of Technology (IIT), Madras, India (2011)
Thesis: Synthesis, Optical and Magnetic Properties of Ni Doped and (Na, Ni) Co-doped ZnO NanoparticlesBachelor’s Degree in Physics (Honors), Burdwan Raj College, The University of Burdwan, India (2009)

Research Experience & Key Achievements 🔬

  • Marie Curie Fellow (June 2023-Present), TU Dresden, Germany
    Leading research on SWIR technology advancements using low-toxic semiconductor QDs, developing record PLQY (>50%) SWIR emitting Cd/Pb-free QDs with very low FWHM (102meV), and exploring PbS QDs in SWIR photodetectors.
  • Postdoctoral Researcher (Dec 2021-May 2023), STEP Group, IRIG, CEA Grenoble, France
    Developed UV, blue, and NIR-emitting QDs for LED applications in collaboration with SAMSUNG, prepared grant proposals, and provided monthly research updates.
  • Postdoctoral Researcher (July 2017-Oct 2021), Functional Optoelectronic Nanomaterials Group, ICFO-Barcelona, Spain
    Led the design of QD-based UV enhanced Si-CMOS sensors and QD-based UV band discriminators, synthesized NIR-efficient kesterite-based quaternary QDs, and PbS QDs for amplified spontaneous emission applications.
  • Doctoral Student (Jan 2012-May 2017), Quantum Dot Lab, JNCASR, India
    Engineered QD interfaces for efficient light emission from CdSe/CdS and CdTe/CdS heterostructures, demonstrated anomalous exchange bias effects in magnetic/semiconductor heterostructures, and synthesized uniform doped QDs using controlled diffusion mechanisms.

Scientific and Technical Skills 🛠️

Material Synthesis: RoHS compliant QDs (InP, Ga2S3, CuInZn(S/Se), AgInTe2, etc.), Pb/Cd-based QDs, diluted magnetic semiconductors, and hybrid magnetic/semiconductor heterostructures.Device Fabrication: Semiconductor processing cleanroom, fabrication of LEDs, photodetectors, FETs, solar cells, sensors, and measurement of electrical and optoelectronic properties.Characterizations: XRD, SEM, XPS, TEM, HRTEM, STEM-EDAX, ICP-OES, TGA, UV-VIS absorption, PL-spectroscopy, TRPL, Raman spectroscopy, FTIR, NMR, XAFS, and UPS.

Awards and Fellowships 🏆

Marie Skłodowska-Curie Actions (MSCA) Postdoctoral Fellowship (2022)‘SEAL of Excellence’ from European Commission (Horizon Europe, 2022)Junior Research Fellowship in Physical Sciences under CSIR fellowship scheme (2012)Eligibility for Lectureship (NET) in Physical Science (CSIR-UGC NET, 2013)

Supervising and Mentoring Activities 👩‍🏫

Instructed a course on ‘Efficiency of Photovoltaic Solar Cells’ at ICFO-Barcelona.Co-instructed practical classes for Masters Students at TU Dresden.Teaching Assistant for Quantum Chemistry and Chemical Bonding at JNCASR.Mentored one PhD, one Master’s, and six visiting students in research projects.Lab Mentor for Integrated PhD Students at JNCASR, Bangalore, India.

Strengths for the Award:

  1. Innovative Research in Sustainable Technologies:
    • Saha has worked on RoHS compliant, non-toxic quantum dots (QDs), emphasizing sustainable and environmentally friendly materials. This aligns well with community-focused research impacting public health and safety.
    • His work on enhancing UV sensitivity for CMOS sensors and developing environmentally friendly UV-Blue emitting QDs for LEDs demonstrates a commitment to improving technology in a sustainable manner.
  2. Extensive Research and Development Experience:
    • His roles span from doctoral research to postdoctoral positions across prestigious institutions and industries, including collaborations with major companies like SAMSUNG.
    • His research has led to breakthroughs in various optoelectronic applications, showcasing a deep understanding and innovative approach to materials science.
  3. Notable Achievements and Recognition:
    • Receipt of the Marie Skłodowska-Curie fellowship, SEAL of Excellence, and other awards highlights his exceptional contributions and recognition in the field.
    • His research outputs, including the development of high-performance QDs and advancements in optoelectronic devices, reflect a high impact in the scientific community.
  4. Leadership and Mentoring:
    • Saha has demonstrated leadership through mentoring students and instructing courses, contributing to the academic and professional growth of the next generation of researchers.
  5. Diverse Technical Skills:
    • Proficient in a wide range of materials synthesis, device fabrication, and characterization techniques, which indicates a comprehensive skill set that supports impactful research.

Areas for Improvement:

  1. Community Engagement:
    • While his research is innovative and impactful, additional emphasis on direct community engagement or outreach activities would strengthen his application for a community-focused award. Demonstrating how his research directly benefits or involves the community could be beneficial.
  2. Documentation of Community Impact:
    • Providing concrete examples or case studies where his work has led to tangible community benefits or collaborations with community-based organizations would strengthen his case.

Conclusion:

Avijit Saha’s extensive research achievements, particularly in developing sustainable and environmentally friendly technologies, make him a strong candidate for the Research for Community Impact Award. His innovative work aligns well with the goals of impacting communities positively through scientific advancement. Emphasizing direct community engagement and providing more detailed examples of how his research has benefited or involved the community could further enhance his suitability for the award.

✍️Publications Top Note :

Near-unity quantum yield in semiconducting nanostructures: Structural understanding leading to energy efficient applications
Authors: A Saha, KV Chellappan, KS Narayan, J Ghatak, R Datta, R Viswanatha
Journal: The Journal of Physical Chemistry Letters
Volume: 4(20), Pages: 3544-3549
Citations: 72
Year: 2013

Uniform doping in quantum-dots-based dilute magnetic semiconductor
Authors: A Saha, A Shetty, AR Pavan, S Chattopadhyay, T Shibata, R Viswanatha
Journal: The Journal of Physical Chemistry Letters
Volume: 7(13), Pages: 2420-2428
Citations: 50
Year: 2016

Ag2ZnSnS4 Nanocrystals Expand the Availability of RoHS Compliant Colloidal Quantum Dots
Authors: A Saha, A Figueroba, G Konstantatos
Journal: Chemistry of Materials
Volume: 32, Pages: 2148-2155
Citations: 30
Year: 2020

Diffusion doping in quantum dots: bond strength and diffusivity
Authors: A Saha, M Makkar, A Shetty, K Gahlot, AR Pavan, R Viswanatha
Journal: Nanoscale
Volume: 9(8), Pages: 2806-2813
Citations: 30
Year: 2017

Visible‐blind ZnMgO Colloidal Quantum Dot Downconverters expand Silicon CMOS Sensors Spectral Coverage into Ultraviolet and enable UV Band Discrimination
Authors: A Saha, G Kumar, S Pradhan, G Dash, R Viswanatha, G Konstantatos
Journal: Advanced Materials
DOI: 10.1002/adma.202109498
Citations: 23
Year: 2022

Magnetism at the Interface of Magnetic Oxide and Nonmagnetic Semiconductor Quantum Dots
Authors: A Saha, R Viswanatha
Journal: ACS Nano
Volume: 11(3), Pages: 3347-3354
Citations: 23
Year: 2017

Ligand assisted digestion and formation of monodisperse FeCoS2 nanocrystals
Authors: A Shetty, A Saha, M Makkar, R Viswanatha
Journal: Physical Chemistry Chemical Physics
Volume: 18(37), Pages: 25887-25892
Citations: 18
Year: 2016

Ag2ZnSnS4-ZnS core-shell colloidal quantum dots: a near-infrared luminescent material based on environmentally-friendly elements
Authors: A Saha, G Konstantatos
Journal: Journal of Materials Chemistry C
DOI: 10.1039/D1TC00421B
Citations: 14
Year: 2021

Interface Modeling Leading to Giant Exchange Bias from the CoO/CoFe2O4 Quantum Dot Heterostructure
Authors: A Saha, S Sohoni, R Viswanatha
Journal: The Journal of Physical Chemistry C
DOI: 10.1021/acs.jpcc.8b11124
Citations: 13
Year: 2019

Ultra-Thin Infrared Optical Gain Medium and Optically-Pumped Stimulated Emission in PbS Colloidal Quantum Dot LEDs
Authors: N Taghipour, I Tanriover, M Dalmases, GL Whitworth, C Graham, A Saha, …
Journal: Advanced Functional Materials
DOI: 10.1002/adfm.202200832
Citations: 12
Year: 2022

Volume and concentration scaling of magnetism in dilute magnetic semiconductor quantum dots
Authors: A Saha, R Viswanatha
Journal: The Journal of Physical Chemistry C
Volume: 121(39), Pages: 21790-21796
Citations: 11
Year: 2017

Core–Shell to Doped Quantum Dots: Evolution of the Local Environment Using XAFS
Authors: A Saha, S Chattopadhyay, T Shibata, R Viswanatha
Journal: The Journal of Physical Chemistry C
Volume: 120(33), Pages: 18945-18951
Citations: 11
Year: 2016

The curious case of CdTe/CdS: photoabsorption versus photoemission
Authors: A Saha, S Chattopadhyay, T Shibata, R Viswanatha
Journal: Journal of Materials Chemistry C
Volume: 2(20), Pages: 3868-3872
Citations: 10
Year: 2014

Thermodynamics of Dual Doping in Quantum Dots
Authors: M Makkar, A Saha, S Khalid, R Viswanatha
Journal: The Journal of Physical Chemistry Letters
Volume: 10, Pages: 1992-1998
Citations: 7
Year: 2019

Gallium Sulfide Quantum Dots with Zinc Sulfide and Alumina Shells Showing Efficient Deep Blue Emission
Authors: A Saha, R Yadav, D Aldakov, P Reiss
Journal: Angewandte Chemie International Edition
Volume: 62(45), Article: e202311317
Citations: 2
Year: 2023

Water‐Soluble Alumina‐Coated Indium Phosphide Core–Shell Quantum Dots with Efficient Deep‐Red Emission Beyond 700 nm
Authors: A Saha, R Yadav, C Rivaux, D Aldakov, P Reiss
Journal: Small
Article: 2404426
Year: 2024

Exciton Dynamics in Mn/Ni Dual‐doped Semiconductor Quantum Dots
Authors: A Saha, K Gahlot, R Viswanatha
Journal: ChemNanoMat
Article: e202100457
Year: 2022

Interface engineering of quantum dot heterostructures for optoelectronic applications and/or magnetic properties
Author: A Saha
Institution: Jawaharlal Nehru Centre for Advanced Scientific Research
Year: 2016

Cd-based-chalcogenide/CdS core-shell nanomaterial, defective/defect-free core nanocrystal, methods and applications thereof
Authors: Ranjani Viswanatha, Avijit Saha, Kavassery Sureswaran Narayan, Kishore …
Patent Number: WO2014147555 A2
Year: 2015