Yanxiang Li | Photocatalysis | Best Researcher Award

Yanxiang Li | Photocatalysis | Best Researcher Award

Assoc.Prof.Dr. Yanxiang Li, Institute of Process Engineering, China.

Publication profile

Scopus

Education and Experience

  • 2005-2009: Ph.D. in Polymer Chemistry and Physics, Institute of Chemistry, CAS 🎓🔬
  • 2002-2005: Master’s in Polymer Chemistry and Physics, Hebei University 🎓🧪
  • 1998-2002: Bachelor’s in Material Chemistry, Hebei University 🎓🔬
  • 2012-Present: Associate Professor, Institute of Process Engineering, CAS 👩‍🏫🏢
  • 2016-2017: Visiting Scholar, Stony Brook University, USA 🌍📚
  • 2009-2012: Postdoctoral Researcher, Suzhou Institute of Nanotechnology and Nano-Bionics, CAS 🔬💡

Suitability For The Award

Associate Professor Yanxiang Li, a prominent researcher at the Institute of Process Engineering (IPE), Chinese Academy of Sciences (CAS), is an exceptional candidate for the Best Researcher Award. With a solid academic background in polymer chemistry and material science, combined with extensive research experience in biomass modification, photocatalysis, and separation technologies, his work has made significant contributions to advancing sustainable and innovative materials and processes.

Professional Development 

  • 2024: Third Prize, Henan Science and Technology Progress Award 🏆🎉
  • 2009: Ningbo Dacheng Scholarship 🏅💼
  • 2009: Director’s Scholarship, Institute of Chemistry, CAS 🎓

Publications Top Notes

Melvin Samuel | Environmental | Environmental Innovation Award

Melvin Samuel | Environmental | Environmental Innovation Award

Dr. Melvin Samuel, Marquette University, United States.

Publication profile

Orcid
Scopus
Googlescholr

Education and Experience

  • Doctor of Philosophy – Ph.D. 🎓
    Vellore Institute of Technology (VIT), Vellore, India – Environmental Science and Engineering, Biotechnology (2013-2016)
  • Master of Science by Research – M.S. by Research 🎓
    Vellore Institute of Technology (VIT), Vellore, India – Environmental Science and Engineering, Biotechnology (2010-2013)
  • Bachelor of Technology – B.Tech 🎓
    Karunya Institute of Technology & Sciences, India – Biotechnology (2006-2010)
  • Senior Research Analyst 📊
    Marquette University, USA (2022-present)
  • Research Associate 🧑‍🔬
    University of Wisconsin-Milwaukee, USA (2018-2022)
  • Science and Policy Advisory Committee Member 🏛️
    Southeastern Wisconsin Watersheds Trust, Inc. (2018-2022)
  • Project Assistant 🔬
    Indian Institute of Technology, Kharagpur, India (2018)
  • Post-Doctoral Research Fellow 👨‍🔬
    Indian Institute of Technology, Kharagpur, India (2016-2018)

Suitability For The Award

Dr. Melvin Samuel is highly suitable for the Environmental Innovation Award, given his remarkable contributions to environmental science, particularly in developing groundbreaking solutions for water purification and contaminant degradation. His research has focused primarily on the mitigation of per- and polyfluoroalkyl substances (PFAS), a persistent environmental and public health concern, showcasing his commitment to creating innovative methods for pollution control and water treatment.

Professional Development 

Awards and Honors 

  • Patent: United States Provisional Patent for antibacterial and anti-biofilm hygiene coatings for water systems 🏅
  • Patent: GO/Cu3(BTC)2/Fe3O4 nanocomposites with enhanced photocatalytic properties 🏅
  • Patent: Metal-organic framework composite for removing environmental contaminants 🏅
  • Certification: Biosafety/Biosecurity & Risk Management valid until 2026 🎖️
  • Certification: Data Security and Privacy, Chemical Hygiene, and Microbiology Lab Safety 🔐

Publications

  • 🛠️ Effect of heat treatment on microstructure and high-temperature wear performance of additive manufactured IN718 – Journal of Manufacturing Processes, 2024, cited by 0.
  • 💧 Enhanced perfluorooctanoic acid (PFOA) degradation by electrochemical activation of peroxydisulfate (PDS) during electrooxidation for water treatment – Science of the Total Environment, 2024, cited by 3.
  • 🌊 A comprehensive review of the challenges and opportunities in microalgae-based wastewater treatment for eliminating organic, inorganic, and emerging pollutants – Biocatalysis and Agricultural Biotechnology, 2024, cited by 2.
  • 🌱 Green energy breakthroughs: Harnessing nano-catalysts and enzymatic catalysts for bioenergy generation – Industrial Crops and Products, 2024, cited by 1.
  • 🌿 Ammonia production from microalgal biosystem: Present scenario, cultivation systems, production technologies, and way forward – Fuel, 2024, cited by 0.
  • ⚛️ Advancement in integrated ammonia synthesis, and its techno-economic analysis, emission index, and contribution to the hydrogen 2.0 economy – Fuel, 2024, cited by 3.
  • 🌍 Production and utilization of green ammonia for decarbonizing the energy sector with a discrete focus on Sustainable Development Goals and environmental impact and technical hurdles – Fuel, 2024, cited by 20.
  • 📏 Graphene materials in pollution trace detection and environmental improvement – Environmental Research, 2024, cited by 6.

Subodh Kumar Jha | Hydrogen Energy | Best Researcher Award

Subodh Kumar Jha | Hydrogen Energy | Best Researcher Award

Mr. Subodh Kumar Jha, North Eastern Hill University,Shillong,Meghalaya, India.

Publication profile

Orcid

Education and Experience

  • 🎓 North Eastern Hill University, Shillong: B.Tech in Energy Engineering (2021–2025) with a CGPA of 8.39.
  • 🥇 Academic Achievements: Ranked 1st in the 4th and 5th semesters, 2nd in remaining semesters.
  • 🏫 Internship – IIT Roorkee: Researched phase change materials for thermal energy storage.
  • 🔬 Internship – Thermax Limited, Pune: Studied heat transfer enhancement using nanomaterials.
  • 🌊 International Internship – IIT Ropar & Energy Mentors, USA: Developed a model for large-scale hydrogen production from seawater.
  • ✈️ Internship – NIT Silchar: Optimized scramjet combustor design for hydrogen applications.

Suitability For The Award

Mr. Subodh Kumar Jha stands out as an exemplary candidate for the Best Researcher Award due to his impressive academic achievements, extensive hands-on research experience, and commitment to promoting sustainable energy practices. Currently a final-year Energy Engineering student at North Eastern Hill University, he has maintained a commendable CGPA of 8.39, consistently ranking at the top of his class. His initiative, Energy Mania, reflects his proactive approach to raising public awareness about renewable energy and energy conservation, showcasing his dedication to community engagement and environmental stewardship.

Professional Development 

Awards and Honors 

  • 🏆 Ganga Quest 2021: Ranked among the top 25 winners, securing a bronze medal 🥉 in current affairs and governance.
  • 📜 MI Scholarship 2020: Awarded by Xiaomi India for academic excellence.

Publications

  •   📄 Incorporation of Phase Change Materials in Buildings – Construction Materials, 2024 (Cited by: 0)

Jiacong Li | Decarbonization | Best Researcher Award

Jiacong Li | Decarbonization | Best Researcher Award

Mr. Jiacong Li , Tsinghua University, China

📚🔬Publication Profile

Orcid 

Suitability For The Award

Jiacong Li is a dedicated Ph.D. student at Tsinghua University, specializing in environmental science and engineering. His research focuses on energy system decarbonization, particularly through the application of carbon capture, utilization, and storage (CCUS) technologies. His innovative approach and significant contributions position him as a strong candidate for the Best Researcher Award.

Education and Experience:

🎓 Ph.D. in Environmental Science and Engineering
Tsinghua University, ongoing

🎓 Bachelor of Engineering
Tsinghua University

🎓 Bachelor of Philosophy
Tsinghua University

🛠 Research Focus:
Energy system decarbonization, carbon capture, utilization, and storage (CCUS)

📊 Published in Applied Energy:
Assessing flexible carbon capture power plants’ synergies with renewable energy

Professional Development

🚀 Jiacong Li has actively contributed to cutting-edge research on the decarbonization of power systems, focusing on the flexible operation of carbon capture and storage technologies. His current projects explore the integration of renewable energy sources like wind and solar with carbon capture systems to enhance power system flexibility. 💡 Jiacong is involved in collaborations with the Tsinghua-Toyota Joint Research Institute and the Ordos-Tsinghua Innovative & Collaborative Research Program, advancing carbon neutrality goals. His ongoing work on decarbonizing the coal-to-methanol industry showcases his dedication to developing sustainable energy solutions for the future. 🌱

Research Focus

🔬 Jiacong Li’s research is centered on decarbonizing energy systems through flexible carbon capture and storage (CCS) technologies. His work explores the synergy between CCS power plants and renewable energy sources such as wind and solar, focusing on large-scale power systems. 🔋 His research aims to optimize the flexibility of CCS operations, ensuring that energy generation remains efficient while reducing carbon emissions. 🌍 By examining the economic and environmental benefits, Jiacong’s studies provide insights into how CCS can be deployed in the near term, offering a pathway toward a carbon-neutral future. 🌱

Awards and Honors 🏆✨

🏅 Best Researcher Award Nominee – 2024

🎖 Research Publication in Applied Energy – 2025

🌟 Tsinghua-Toyota Joint Research Institute Cross-discipline Program

🌟 Ordos-Tsinghua Collaborative Research in Carbon Neutrality

Publications 📚📝

📄 Assessing the synergies of flexibly-operated carbon capture power plants with variable renewable energy in large-scale power systems – Applied Energy (2025)
Cited by: N/A

📄 Combined solar power and storage as cost-competitive and grid-compatible supply for China’s future carbon-neutral electricity system – Proceedings of the National Academy of Sciences (2021)
Cited by: N/A

Conclusion

Jiacong Li’s academic achievements, robust research contributions, and innovative approach to energy decarbonization align well with the criteria for the Best Researcher Award. His ongoing efforts to advance CCUS technologies and his ability to publish impactful research highlight his potential to make significant contributions to the field of environmental science and engineering. Recognizing his work with this award would not only honor his achievements but also encourage further innovation in sustainable energy solutions.

Raminder Kaur | Environmental effects | Best Women Award

Dr. Raminder Kaur | Environmental effects | Women Researcher Award

DOCTORATE at DELHI TECHNOLOGICAL UNIVERSITY, India

The individual is a distinguished Assistant Professor of Chemical Engineering at Delhi Technological University (DTU), Delhi. With an extensive background in polymer technology and chemical engineering, they have established a notable career through research and academic contributions in bio-based materials and reaction kinetics.

Profile

ORCID Profile

Scopus profile

Author Metrics

The researcher has an impressive publication record with 42 research papers, 2 book chapters, and a patent. Their work has a total impact factor of 125.68, with 916 citations as of August 2024. Their h-index is 17, and their i10-index is 24.

Education

  • Ph.D. in Chemical Engineering, Indian Institute of Technology (IIT), Delhi (2009)
  • M.Tech in Polymer Technology, Panjab University, Chandigarh (2002; First Rank)
  • B.Tech in Chemical Engineering, Beant College of Engineering and Technology (BCET), Gurdaspur, PTU Jalandhar (2000)

Research Focus

Their research focuses on bio-based polymeric materials, including bio-based polyurethane and non-isocyanate polyurethane, energy storage solutions, pollution abatement techniques, and reaction kinetics. They explore novel applications and sustainable practices in these areas.

Professional Journey

The researcher has held positions as an Assistant Professor at DTU Delhi since October 2010, progressing through ranks with varying AGP levels. Prior roles include Senior Research Fellow at Indian Institute of Chemical Technology (IICT), Hyderabad, and Research Scientist at the Centre for Polymer Science, IIT Delhi.

Honors & Awards

  • Commendable Research Award, DTU (2023, 2022, 2021, 2019, 2018, 2017)
  • DRDO Research Project Award, ER&IPR, Ministry of Defence (2015)
  • Senior Research Fellowship (SRF), CSIR, Govt. of India (2003)
  • Merit Certificate, Education Department Punjab Govt.

Publications Noted & Contributions

Notable publications include research on nano-structured polyaniline for hazardous waste eradication and environment-friendly rigid polyurethane foam. Their contributions span 42 research publications, 2 book chapters, and significant citations in international and national journals.

Research Timeline

  • 2000: B.Tech in Chemical Engineering
  • 2002: M.Tech in Polymer Technology
  • 2003: Senior Research Fellowship at CSIR
  • 2009: Ph.D. in Chemical Engineering
  • 2010-Present: Assistant Professor at DTU Delhi

Collaborations and Projects

Key projects include developing a novel adsorbent for wastewater treatment and creating environmentally friendly polyurethane foam. They have collaborated with DRDO and CSIR, reflecting their engagement in high-impact research and development initiatives.

Publications
      1. Primary Microplastics in the Ecosystem: Ecological Effects, Risks, and Comprehensive Perspectives on Toxicology and Detection Methods
        Journal of Environmental Science and Health, Part C
        2024-07-05
        DOI: 10.1080/26896583.2024.2370715
        Contributors: Pooja Singh, Gunjan Varshney, Raminder Kaur
      2. Innovations in Packaging to Monitor and Maintain the Quality of the Food Products
        Journal of Packaging Technology and Research
        2024-03
        DOI: 10.1007/s41783-024-00163-4
        Contributors: Neelam Yadav, Raminder Kaur
      3. One Pot Synthesis of Bio-Based Porous Isocyanate-Free Polyurethane Materials
        Materials Letters
        2023
        DOI: 10.1016/j.matlet.2022.133433
        EID: 2-s2.0-85141918099
        Contributors: Pooja Singh, Raminder Kaur
      4. Catalytic Performance of Cow-Dung Sludge in Water Treatment Mitigation and Conversion of Ammonia Nitrogen into Nitrate
        Sustainability (Switzerland)
        2022
        DOI: 10.3390/su14042183
        EID: 2-s2.0-85124846744
        Contributors: L. Kumar, J. Sharma, Raminder Kaur
      5. Fabrication and Investigation on Influence of Metal Oxide Nanoparticles on Thermal, Flammability and UV Characteristics of Polyethylene Glycol Based Phase Change Materials
        Journal of Energy Storage
        2022
        DOI: 10.1016/j.est.2022.105318
        EID: 2-s2.0-85134606450
        Contributors: S. Tanwar, Raminder Kaur

Strengths of the Women Researcher Award

  1. Pioneering Research Contributions
    • The recipient’s research in bio-based polymeric materials, including innovative work on bio-based polyurethane and energy storage solutions, demonstrates a significant impact on both academia and industry. Such pioneering contributions enhance the sustainability and practical applications of chemical engineering materials.
  2. Impressive Publication Record
    • With 42 research papers, 2 book chapters, and a patent, the researcher’s publication record showcases a high level of productivity and quality in their field. The total impact factor of 125.68 and 916 citations reflect the substantial influence of their work.
  3. Recognition and Awards
    • The researcher has received multiple Commendable Research Awards from DTU and a DRDO Research Project Award, highlighting their excellence and consistency in research. These accolades underscore their significant contributions and recognition within the academic community.
  4. Collaborative Projects with High Impact
    • Their involvement in collaborative projects with prestigious organizations such as DRDO and CSIR demonstrates their capability to contribute to high-impact, interdisciplinary research. This collaboration emphasizes the practical relevance and potential societal benefits of their work.
  5. Educational Background and Progression
    • The researcher’s educational journey, from a B.Tech to a Ph.D. and subsequent academic roles, illustrates a solid foundation and continuous growth in their expertise. Their progress from a Senior Research Fellow to an Assistant Professor reflects their dedication and expertise in the field.

Areas for Improvement

  1. Broaden Research Scope
    • While the focus on bio-based polymers and reaction kinetics is notable, expanding research into emerging areas such as advanced nanomaterials or artificial intelligence applications in chemical engineering could further enhance the impact and scope of their work.
  2. Increase Public Engagement
    • Increasing engagement with the public through outreach activities, such as popular science articles or public lectures, could help translate their research findings into accessible information, raising awareness and fostering greater societal impact.
  3. Diversify Collaborative Networks
    • Expanding collaborations beyond DRDO and CSIR to include international institutions and industry partners could provide new perspectives and resources, potentially leading to innovative breakthroughs and broader research applications.
  4. Enhance Research Funding
    • Securing additional research funding from diverse sources, including international grants or industry partnerships, could support larger-scale projects and facilitate the exploration of new research avenues.
  5. Focus on Emerging Trends
    • Keeping abreast of and integrating emerging trends and technologies, such as green chemistry or digitalization in chemical engineering, could ensure that the research remains at the cutting edge and addresses future challenges effectively.

Conclusion

In summary, the researcher has demonstrated outstanding achievements through their pioneering research, impressive publication record, and significant recognition within the academic community. Their contributions to bio-based materials and reaction kinetics are particularly notable, reflecting their expertise and dedication. However, to further enhance their impact, they could benefit from expanding their research scope, increasing public engagement, diversifying collaborative networks, enhancing research funding, and focusing on emerging trends. By addressing these areas for improvement, the researcher has the potential to continue making significant contributions to the field of chemical engineering and beyond.

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Mohamed El Amine Boudia | Solar Cells | Best Researcher Award

Mohamed El Amine Boudia | Solar Cells | Best Researcher Award

Dr. Mohamed El Amine Boudia,  Xi’an Jiaotong University, China

🌞 Dr.Mohamed El Amine Boudia is a dedicated researcher specializing in organic solar cells, currently engaged in simulating these devices using an optoelectronic model under standard conditions (100 mW cm^-2 of AM 1.5 G illumination). His work focuses on understanding the electrical processes within organic solar cells to extract key performance factors such as PCE, Voc, Jsc, FF, EQE, and CELIV. Originating from Algeria and China, Mohamed is contributing significantly to the field of photovoltaics by exploring the efficiency enhancements of ternary organic solar cells (TOSC) through varying charge carrier densities and mobility ratios. 🌱🔋

Publication Profile

Education and Experience 📚

🎓Dr. Mohamed holds a strong academic background in photovoltaics and materials science, which underpins his expertise in simulating and fabricating organic solar cells. His experience includes working with cutting-edge technologies like solar simulators, glove boxes, and solution-processed organic materials, allowing him to push the boundaries of solar energy research. 🧑‍🔬🔧

Professional Development 🏆

📈 Throughout his career, Mohamed has been involved in various research projects and collaborations that have enhanced his understanding of organic and hybrid solar cells. His continuous learning and application of advanced techniques in power conversion efficiency and material optimization have made him a valuable contributor to the solar energy community. 🌐🛠️

Research Focus 🔬

🔬 Dr. Mohamed’s research is centered on the development and optimization of organic solar cells, with a particular interest in the performance metrics and efficiency improvements of these devices. By simulating conventional and inverted organic solar cells and exploring the role of electron transport layers like SnO2, he aims to achieve higher efficiency rates and better overall performance. His work on ternary organic solar cells and loss processes is paving the way for future innovations in the field. 🌞⚡

Publications 📚📝

  • Simulation and Comparison of the Photovoltaic Performance of Conventional and Inverted Organic Solar Cells with SnO2 as Electron Transport Layers 📜 “Energies”, 2024-07-05 | Contributors: Mohamed El Amine Boudia, Qiuwang Wang, Cunlu Zhao 📚
  • Latest Updates of Single-Junction Organic Solar Cells up to 20% Efficiency 📜 “Energies”, 2023 | Contributors: El Amine Boudia Mohamed, Zhou Yi, Li Hongying, Wang Qiuwang, Xi Jun, Zhao Cunlu 📚