Quanquan Guo | Mechanics of Functional and Intelligent Materials | Excellence in Research Award

Dr. Quanquan Guo | Mechanics of Functional and Intelligent Materials | Excellence in Research Award

Postdoctoral Researcher at Max Planck Institute of Microstructure Physics | Germany

Dr. Quanquan Guo is a materials scientist whose research bridges dynamic polymer chemistry, sustainable energy systems, and advanced functional materials, with a strong focus on “Structure Code of Organic Electrode Materials for Rechargeable Multivalent Metal Batteries,” “Proton-Selective Coating Enables Fast-Kinetics High-Mass-Loading Cathodes for Sustainable Zinc Batteries,” and “Hierarchically Structured Hydrogel Actuator for Microplastic Pollutant Detection and Removal,” reflecting the breadth of his scientific vision. He serves as a Postdoctoral Associate at the Max Planck Institute of Microstructure Physics and Technische Universität Dresden, where he advances high-performance aqueous battery electrode-skin strategies, molecularly engineered polymer networks, and recyclable electronics. His academic foundation spans a doctorate, master’s, and bachelor’s training in polymer science and engineering, during which he developed pioneering works such as “Protein-Inspired Self-Healable Ti₃C₂ MXenes-Based Supramolecular Elastomer for Intelligent Sensing,” “A Cephalopod-Inspired Mechanoluminescence Material with Skin-Like Self-Healing and Sensing Properties,” “A Review of Mechanochromic Polymers and Composites,” and “Biological Phytic Acid as a Multifunctional Curing Agent for Elastomers.” His contributions extend to emerging technologies including two-dimensional conjugated MOFs, smart adsorbent materials, mechanochromic electronic skins, recyclable functional membranes, and scalable manufacturing platforms such as screen printing and latex-template self-assembly. With more than forty publications, including numerous first and co-first-author articles in leading journals such as Nature Communications, Chemical Society Reviews, Angewandte Chemie, ACS Nano, Advanced Functional Materials, and Chemistry of Materials, his work has accumulated thousands of citations and has earned widespread recognition. His portfolio is complemented by patented polymer-composite technologies and contributions to the monograph Solutions to Microplastics Pollution. Through his interdisciplinary approach, Quanquan Guo continues to develop transformative materials aimed at sustainable energy storage, smart electronics, and environmental remediation.

Profile:  Orcid | Google Scholar

Featured Publications:

Su, G., Yin, S., Guo, Y., Zhao, F., Guo, Q., Zhang, X., Zhou, T., & Yu, G. (2021). Balancing the mechanical, electronic, and self-healing properties in conductive self-healing hydrogel for wearable sensor applications. Materials Horizons, 8(6), 1795–1804.

Liu, X., Su, G., Guo, Q., Lu, C., Zhou, T., Zhou, C., & Zhang, X. (2018). Hierarchically structured self-healing sensors with tunable positive/negative piezoresistivity. Advanced Functional Materials, 28(15), 1706658.

Guo, Q., Zhang, X., Zhao, F., Song, Q., Su, G., Tan, Y., Tao, Q., Zhou, T., Yu, Y., … (2020). Protein-inspired self-healable Ti₃C₂ MXenes/rubber-based supramolecular elastomer for intelligent sensing. ACS Nano, 14(3), 2788–2797.

Guo, Q., Huang, B., Lu, C., Zhou, T., Su, G., Jia, L., & Zhang, X. (2019). A cephalopod-inspired mechanoluminescence material with skin-like self-healing and sensing properties. Materials Horizons, 6(5), 996–1004.

Wang, Y., Guo, Q., Su, G., Cao, J., Liu, J., & Zhang, X. (2019). Hierarchically structured self-healing actuators with superfast light- and magnetic-response. Advanced Functional Materials, 29(50), 1906198.

Mr. Peeyush Phogat | Mechanics of Functional Award | Best Researcher Award

Mr. Peeyush Phogat | Mechanics of Functional Award | Best Researcher Award

Mr. Peeyush Phogat, Netaji Subhas University of Technology, India

Mr. Peeyush Phogat 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:

Orcid

Google scholar

🔍 About Me

I am dedicated to demonstrating excellence in research and analytical thinking, as evidenced by a proven track record of conducting innovative and impactful research in the field of energy materials. Possessing advanced skills in experimental design, data analysis, and critical interpretation, I have consistently pushed the boundaries of knowledge in my field. My ability to think analytically, coupled with a keen attention to detail, has not only led to the successful completion of several research projects but has also resulted in publications in reputed peer-reviewed journals. My commitment to excellence in research positions me as a candidate capable of making significant contributions to the academic and scientific community.

🎓 Education

Doctor of Philosophy (Doctorate), Netaji Subhas University of Technology, New Delhi, INDIAMaster of Science, Deenbandhu Chhotu Ram University of Science and Technology, Murthal, Sonepat, Haryana, INDIABachelors of Science, Maharshi Dayanand University, Rohtak, Haryana, INDIA

💼 Professional Skills

Experimental designData analysisCritical interpretationMaterial characterization techniquesSynthesis techniquesElectrochemical applicationsResearch and analytical skillsCommunication skills

🏅 Awards and Accomplishments

Award for 2nd position at college level in 2nd semester of BachelorsAward for 3rd position at college level in 4th semester of BachelorsBest Paper Awards at International ConferencesPresented research papers at various international conferences

📜 Book Chapters

Role of Nanotechnology in Space Exploration and ColonizationDiffusion Controlled Features of Microwave Assisted ZnS/ZnO NanocompositeElectrochemical Analysis of Thermally Treated Two Dimensional Zinc Sulphide Hexagonal Nano-SheetsAnd more…

🔬 Area of Research Interests

Synthesis And Characterization Of Chalcogenide Nanocomposites For Energy MaterialsSolar cells and PhotodetectorsElectrochemical Applications such as Electrochemical Phot-Detection, Electrochemical Solar Cell, HER/OER, and Electrochemical SensingPhoto catalysis / Pollutant Degradation using Nano Materials

🎖️ Declaration

I solemnly declare and affirm that all the information provided in this curriculum vitae is accurate, complete, and true to the best of my knowledge and belief. I acknowledge that any misrepresentation or omission of facts may result in disqualification from consideration for the position or opportunities sought. This declaration is made in good faith, and I am committed to upholding the highest standards of honesty, integrity, and transparency in all aspects of my professional and academic endeavors.

 

📊 Citation Metrics (Google Scholar):

Citations by: All – 69, Since 2019 – 69
h-index: All – 6, Since 2018 – 6
i10 index: All – 1, Since 2018 –1

📖 Publications  Top Note :

 

  1. “Diffusion Controlled Features of Microwave Assisted ZnS/ZnO Nanocomposite with Reduced Band Gap” Authors: P. Phogat, Shreya, R. Jha, S. Singh Journal: ECS Journal of Solid State Science and Technology Year: 2023
  2. “Microwave-synthesized γ-WO3 nanorods exhibiting high current density and diffusion characteristics” Authors: Shreya, P. Phogat, R. Jha, S. Singh Journal: Transition Metal Chemistry Year: 2023
  3. “Surfactant-Mediated Modulation of Morphology and Charge Transfer Dynamics in Tungsten Oxide Nanoparticles” Authors: T. Kumar, Shreya, P. Phogat, V. Sahgal, R. Jha Journal: Physica Scripta Year: 2023
  4. “Electrochemical and Optical Properties of Microwave Assisted MoS2 nanospheres for solar cell application” Authors: S. Sharma, P. Phogat, R. Jha, S. Singh Journal: International Journal of Smart Grid and Clean Energy Year: 2023
  5. “Fabrication of Tunable Band Gap Carbon Based Zinc Nanocomposites for Enhanced Capacitive Behaviour” Authors: D. Dipti, P. PHOGAT, Shreya, D. Kumari, S. Singh Journal: Physica Scripta Year: 2023
  6. “Impedance Study of Zinc Sulphide Quantum Dots via One Step Green Synthesis” Authors: P. Phogat, Shreya, R. Jha, S. Singh Journal: Materials Science Forum Year: 2023
  7. “Optical and microstructural study of wide band Gap ZnO@ ZnS core–shell nanorods to be used as solar cell applications” Authors: P. Phogat, Shreya, R. Jha, S. Singh Conference: International Conference on Sustainable Technologies and Advances Year: 2022