Preeti Nain | Recycling Solar | Best Researcher Award

Best Researcher Award

Preeti Nain
Oak Ridge National Laboratory

Preeti Nain
Affiliation Oak Ridge National Laboratory
Country United States
Google Scholar ID 3UJMhJAAAAAJ
Documents 29
Citations 711
h-index 14
Subject Area Recycling Solar
Event Global Scientist Day Awards

Preeti Nain is a researcher affiliated with Oak Ridge National Laboratory whose scholarly activities contribute to advancing scientific understanding in the area of recycling solar technologies and sustainable materials research. Through peer-reviewed publications, interdisciplinary collaboration, and measurable citation impact, her work reflects active engagement in addressing challenges related to renewable energy sustainability and resource recovery. The academic profile presented herein evaluates her suitability for recognition through the Best Researcher Award within the framework of the Global Scientist Day Awards.[1]

Abstract

This academic article evaluates the scholarly achievements of Preeti Nain in the context of the Best Researcher Award. The assessment considers research productivity, citation performance, subject specialization, institutional affiliation, and contribution to scientific advancement in recycling solar technologies. Available bibliometric indicators demonstrate a sustained research presence characterized by peer-reviewed publications and measurable academic influence. Such achievements support recognition within international scientific award programs that emphasize research excellence, innovation, and societal relevance.[1][2]

Keywords

Recycling Solar, Renewable Energy, Sustainable Materials, Resource Recovery, Circular Economy, Research Excellence, Scientific Impact, Energy Sustainability, Best Researcher Award, Global Scientist Day Awards.

Introduction

The transition toward sustainable energy systems has increased the importance of research focused on renewable energy technologies and end-of-life management of solar materials. Recycling solar technologies represent a critical component of circular economy strategies aimed at reducing environmental impact while maximizing resource efficiency. Researchers working within this domain contribute to scientific knowledge that supports long-term sustainability objectives. Preeti Nain’s scholarly activities align with these priorities and reflect participation in research areas that have practical and environmental significance.[2]

Research Profile

Preeti Nain is associated with Oak Ridge National Laboratory, a prominent research institution recognized for multidisciplinary scientific investigations. Available academic metrics indicate a publication portfolio comprising 29 scholarly documents and a citation count exceeding 700 citations. An h-index of 14 suggests consistent scholarly influence across multiple publications and reflects a body of work that has received acknowledgment from the research community.[1]

  • Affiliation with Oak Ridge National Laboratory.
  • Research specialization related to recycling solar technologies.
  • 29 documented scholarly publications.
  • 711 academic citations.
  • h-index value of 14.

Research Contributions

Research in recycling solar technologies contributes to addressing environmental concerns associated with photovoltaic waste and resource depletion. Scholarly efforts in this field often focus on material recovery, lifecycle assessment, process optimization, and sustainable manufacturing practices. Through publication activity and scientific dissemination, Preeti Nain has participated in advancing knowledge relevant to renewable energy sustainability and responsible resource management.[2][3]

  • Advancement of sustainable approaches to solar material management.
  • Contribution to renewable energy research literature.
  • Participation in interdisciplinary scientific collaboration.
  • Support for circular economy objectives through research outcomes.

Publications

The publication record associated with the researcher demonstrates consistent scholarly engagement. Citation indicators suggest that a number of these publications have been referenced by subsequent studies, indicating relevance to ongoing scientific discussions. Representative literature within the broader field of solar recycling and sustainable energy includes peer-reviewed research supported by internationally recognized journals and publishers.[3][4]

  • Peer-reviewed journal articles.
  • Research contributions in renewable energy sustainability.
  • Publications receiving measurable citation impact.
  • Interdisciplinary scientific studies relevant to resource recovery.

Research Impact

Bibliometric indicators provide evidence of academic influence and visibility. A citation count of 711 reflects the extent to which the researcher’s work has informed or supported subsequent investigations. The h-index of 14 further indicates that multiple publications have achieved sustained citation performance. These metrics suggest a meaningful contribution to the scientific literature and demonstrate scholarly engagement within the research community.[1]

Award Suitability

The Best Researcher Award recognizes individuals whose scholarly accomplishments demonstrate research quality, measurable impact, innovation, and relevance to contemporary scientific challenges. Based on available information, Preeti Nain exhibits characteristics commonly associated with award eligibility, including publication productivity, citation influence, institutional affiliation with a leading research organization, and contributions to an area of growing global importance. The research focus on recycling solar technologies aligns with international sustainability goals and supports broader efforts toward renewable energy development and environmental stewardship.[1][5]

Conclusion

Preeti Nain’s academic profile reflects sustained research activity, measurable scholarly impact, and engagement with topics of significance to sustainable energy systems. Through publications, citations, and contributions to recycling solar research, the researcher demonstrates qualifications consistent with the objectives of the Best Researcher Award. Recognition through the Global Scientist Day Awards would acknowledge scientific efforts that support innovation, sustainability, and knowledge advancement within the broader research community.

References

  1. Google Scholar. (n.d.). Scholar profile of Preeti Nain (User ID: 3UJMhJAAAAAJ). https://scholar.google.com/citations?user=3UJMhJAAAAAJ&hl=en
  2. Initial metal contents and leaching rate constants of metals leached from end-of-life solar photovoltaic waste: An integrative literature review and analysis. https://www.sciencedirect.com/science/article/abs/pii/S1364032119308007
  3. Ecological and human health risk assessment of metals leached from end-of-life solar photovoltaics
    https://www.sciencedirect.com/science/article/abs/pii/S0269749120360814
  4. Temporal variation of leachate pollution index of Indian landfill sites and associated human health risk.
    https://link.springer.com/article/10.1007/s11356-021-12383-1
  5. A state-of-art review on end-of-life solar photovoltaics. https://www.sciencedirect.com/science/article/abs/pii/S0959652622006138

Xinping Duan | Green Chemistry | Research Excellence Award

Prof. Xinping Duan | Green Chemistry | Research Excellence Award

Prof. Xinping Duan | Xiamen University | China

Prof. Xinping Duan of Xiamen University, China, is an internationally recognized researcher in catalysis, materials chemistry, and sustainable chemical transformations. With a distinguished academic career spanning nearly two decades, he has established himself as a leading figure in the fields of heterogeneous catalysis, CO₂ conversion, selective hydrogenation, photocatalysis, and advanced nanomaterials. His research contributions have significantly advanced the understanding of catalytic mechanisms, metal–support interactions, and rational catalyst design for energy-efficient and environmentally friendly chemical processes. Prof. Duan’s scientific impact is reflected in his outstanding publication metrics: over 72 papers, an H-index of 33, and more than 3,318 citations. His work consistently appears in top-tier journals, including Science, Nature Communications, Science Advances, ACS Catalysis, Chemical Engineering Journal, Journal of Catalysis, and Chemical Science. Several of his landmark papers—such as those on copper–silica nanocatalysts, selective CO₂ hydrogenation, and novel metal oxide interfaces—have received exceptional citation counts and have influenced both academic research and industrial catalyst development. A hallmark of Prof. Duan’s research is his ability to integrate advanced nanostructures, metal phosphides, metal carbides, and polyoxometalates to achieve high catalytic selectivity and stability. His studies on hydrogenolysis, hydrogenation, and biomass-derived oxygenate conversion have contributed to the development of greener pathways for producing fuels, fine chemicals, and value-added intermediates. He has also explored cutting-edge topics such as oxygen vacancy engineering, interfacial electron localization, spillover effects, and ambient-pressure catalytic processes. Through his rigorous research approach and sustained scientific productivity, Prof. Xinping Duan has earned a strong reputation as a catalyst innovation leader in China and abroad. His work continues to shape modern heterogeneous catalysis, clean energy conversion, and sustainable chemical engineering, positioning him as a prominent contributor to global scientific advancement.

Profile: Scopus | Orcid

Featured Publications

Lin, H., Liang, X., Wen, Z., Jiao, W., Wang, R., Lian, Y., & Duan, X. (2025). The superiority of W⁶⁺ overturns the CO₂ hydrogenation selectivity of iridium. Chemical Communications. https://doi.org/10.1039/D5CC02796A

Cheng, T., Liu, Y., Miao, F., Duan, X., & Liu, Y., & Jiao, W. (2025, July). Catalytic ozonation degradation of sulfamethoxazole by high gravity coupled monolithic catalyst Ce–Co/CH: Efficacy, mechanism, pathways and toxicity. Chemical Engineering Journal. https://doi.org/10.1016/j.cej.2025.163553

Duan, X., Zhao, Y., Chou, H.-L., Zuo, J., Wang, R., Jiao, W., Fang, H., Zheng, Y., Lin, H., Ye, L., et al. (2025, March 7). Reversible spillover wakens reactivity of dormant modular hydrochlorination catalysts. ACS Catalysis. https://doi.org/10.1021/acscatal.4c06661

Duan, X., Zuo, P., Li, N., Lu, J., Zhang, J., Wen, Z., Fang, H., Jiao, W., Wang, R., & Lin, H. (2024, October 22). Collective redox-shuttling properties of nanoalloys boost water electrolysis of nitrides [Preprint]. https://doi.org/10.21203/rs.3.rs-5236379/v1

Ji, X., Zhang, J., Li, N., Qiu, L., Zhang, G., Duan, X., & Wang, R. (2024, May 13). Accelerated “electron converter” characteristics of NiCo-LDH for a CdS-carbide photocatalytic system with a dual heterointerface. ACS Sustainable Chemistry & Engineering. https://doi.org/10.1021/acssuschemeng.4c00778

Ji, X., Zhang, J., Zhang, G., Li, N., Wang, R., Lin, H., & Duan, X. (2024, April). Dual interfacing with metallic cobalt boosts the electron shuttle of CdS-carbide nanoassemblies. Journal of Colloid and Interface Science. https://doi.org/10.1016/j.jcis.2024.01.142

Mudassir Iqbal | Green Chemistry | Best Researcher Award

Prof. Dr. Mudassir Iqbal | Green Chemistry | Best Researcher Award

National University of Sciences and Technology | Pakistan

Dr. Mudassir Iqbal is a Tenured Professor of Chemistry at the National University of Sciences and Technology (NUST), Islamabad, and is internationally recognized for his contributions to cutting-edge research in chemistry and materials science. His academic journey spans prestigious institutions in Europe and Asia, where he gained expertise in nanomaterials, ligand design, organic synthesis, and quantum dot functionalization. His current research explores biopolymers for biomedical applications, advanced nanomaterials for clean energy, task-specific ionic liquids, environmental remediation, and the development of novel therapeutic agents. Alongside his extensive publication record, he has successfully led major funded projects, trained young scientists, and contributed to the advancement of sustainable technologies. Dr. Iqbal’s work continues to bridge fundamental science with real-world applications, making him a highly respected scholar and innovator in his field.

Profile: Google Scholar

Featured Publications

“Synthesis and characterization of layered Nb2C MXene/ZnS nanocomposites for highly selective electrochemical sensing of dopamine”

“Highly efficient diglycolamide‐based task‐specific ionic liquids: synthesis, unusual extraction behaviour, irradiation, and fluorescence studies”

“Diglycolamide-functionalized calix [4] arenes showing unusual complexation of actinide ions in room temperature ionic liquids: role of ligand structure, radiolytic stability”

“Green synthesis and characterization of silver nanoparticles using Cydonia oblong seed extract”

“A highly efficient solvent system containing functionalized diglycolamides and an ionic liquid for americium recovery from radioactive wastes”

“Extraction of Am (III) using novel solvent systems containing a tripodal diglycolamide ligand in room temperature ionic liquids: a ‘green’ approach for radioactive waste processing”

“A novel CMPO-functionalized task specific ionic liquid: synthesis, extraction and spectroscopic investigations of actinide and lanthanide complexes”

“Preorganization of diglycolamides on the calix [4] arene platform and its effect on the extraction of Am (III)/Eu (III)”

“Magnetic phase transition from paramagnetic in Nb2AlC-MAX to superconductivity-like diamagnetic in Nb2C-MXene: an experimental and computational analysis”

“Synthesis and Am/Eu extraction of novel TODGA derivatives”

“6-deoxy-aminocellulose derivatives embedded soft gelatin methacryloyl (GelMA) hydrogels for improved wound healing applications: In vitro and in vivo studies”

“Plutonium (IV) complexation by diglycolamide ligands—coordination chemistry insight into TODGA-based actinide separations”