Donghan Li | Materials Science | Best Paper Award

Best Paper Award

Donghan Li
Affiliation Shenyang University of Chemical Technology; Liaoning Key Laboratory of Polymer Materials Application Technology
Country China
Scopus ID 57189616692
Documents 48
Citations 596
h-index 14
Subject Area Materials Science
Event Best Paper Awards
Award Best Paper Award

Donghan Li

Donghan Li of Shenyang University of Chemical Technology, China, is recognized with the Best Paper Award for research contributions in materials science, particularly in the development of functional polymeric gels and advanced biomass-derived materials. This profile highlights the researcher’s academic record and the awarded publication titled “From Biomass to Functional Gels: Multiscale Topology Reconstruction and High-Performance Applications.”

Abstract

This article recognizes Donghan Li for receiving the Best Paper Award in recognition of research excellence in materials science. The awarded research, titled “From Biomass to Functional Gels: Multiscale Topology Reconstruction and High-Performance Applications,” addresses the development of functional gels derived from biomass and focuses on multiscale topology reconstruction and high-performance applications. The work represents a research direction connecting biomass resources, functional polymer materials, structural design, and advanced material applications.

Keywords

Biomass-Derived Materials, Functional Gels, Polymer Materials, Multiscale Topology, Topology Reconstruction, High-Performance Gels, Sustainable Materials, Materials Science, Functional Polymer Networks, Advanced Materials.

Introduction

The development of sustainable and high-performance materials has become an important direction in modern materials science. Biomass provides an abundant source of renewable materials that can be transformed into functional polymeric structures and advanced gel systems. Functional gels are particularly important because their three-dimensional networks can be engineered to provide specialized mechanical, chemical, physical, and application-oriented properties.

Research Profile

Donghan Li is affiliated with Shenyang University of Chemical Technology and the Liaoning Key Laboratory of Polymer Materials Application Technology in China. The researcher’s subject area is Materials Science. The available profile records 48 documents, 596 citations, and an h-index of 14. These bibliometric indicators demonstrate an established publication record and significant academic visibility within the research field.

Research Contributions

The awarded publication, “From Biomass to Functional Gels: Multiscale Topology Reconstruction and High-Performance Applications,” contributes to materials science by examining how biomass-derived resources can be transformed into functional gel materials. The research emphasizes multiscale topology reconstruction as an important approach for controlling material architecture and improving functional performance.

Research Impact

The academic profile of Donghan Li records 596 citations across 48 documents, with an h-index of 14. These indicators demonstrate substantial scholarly engagement with the researcher’s published work and establish a strong research presence within materials science.

Award Suitability

The Best Paper Award recognizes research demonstrating academic quality, technical relevance, originality, and meaningful contribution to its respective field. Donghan Li’s awarded research aligns with these objectives through its focus on biomass-derived functional gels, multiscale topology reconstruction, and high-performance material applications.

Conclusion

Donghan Li’s research represents a valuable contribution to the field of Materials Science, particularly in the area of biomass-derived functional polymer materials and advanced gel systems. The awarded publication, “From Biomass to Functional Gels: Multiscale Topology Reconstruction and High-Performance Applications,” highlights the importance of multiscale structural design in developing high-performance functional gels.

External Links

References

  1. Scopus Author Profile: Donghan Li, Author ID 57189616692.
    Scopus. https://www.scopus.com/pages/authors/57189616692
  2. ORCID Research Profile: Donghan Li.
    ORCID: https://orcid.org/0000-0003-1058-9552
  3. Best Paper Awards.
    https://bestpaperawards.com/

Vishal Kumar Parida | Materials Science | Innovation Catalyst Achievement Award

Assist. Prof. Dr. Vishal Kumar Parida | Materials Science | Innovation Catalyst Achievement AwardΒ 

Assistant Professor at Amity Univeristy Jharkhand, India,

Dr. Vishal Kumar Parida is a dedicated environmental engineering researcher and Assistant Professor at Amity University Jharkhand πŸŒΏπŸ”¬. With expertise in advanced photocatalytic materials, he focuses on visible light-assisted degradation of emerging pharmaceutical contaminants in wastewater πŸ’§βœ¨. His innovative work integrates nanomaterial synthesis, reactor design, and sustainable treatment strategies for real-world applications. πŸ“šπŸ§ͺ He has authored high-impact publications, presented at international conferences, and collaborates with renowned mentors from IIT Kharagpur 🀝🌍. Driven by critical thinking, adaptability, and mentoring skills, Dr. Parida actively contributes to building solutions for cleaner water and a healthier environment. His strong commitment to interdisciplinary research and sustainability positions him as a promising catalyst for innovation in environmental management and wastewater treatment technologies πŸŒπŸ’‘.

Professional Profile

πŸŽ“ Education

Dr. Vishal Kumar Parida holds a strong academic foundation in civil and environmental engineering πŸ“˜. He earned his B.Tech in Civil Engineering from the College of Engineering Bhubaneswar, demonstrating early dedication to infrastructure and sustainable development πŸ—οΈ. He then pursued an M.Tech in Environmental Engineering from the National Institute of Foundry and Forge Technology, Ranchi, where he focused on advanced studies of fluoride removal from groundwater πŸ’§. His rigorous academic journey was marked by consistently high grades and relevant research exposure. He is also GATE qualified in Civil Engineering, underlining his competitive excellence in the field πŸ…. With each step, Dr. Parida has built the expertise needed to tackle complex environmental challenges through technical knowledge and a strong research mindset 🌿.

πŸ’Ό Professional Experience

Dr. Parida is currently serving as an Assistant Professor at Amity University Jharkhand within the School of Engineering and Technology πŸ‘¨β€πŸ«. His role bridges teaching, advanced research, and mentoring budding engineers and environmental scientists πŸ“šβœ¨. Under the guidance of distinguished professors, he has developed cutting-edge research on photocatalytic materials and sustainable water treatment methods. His responsibilities include designing and supervising laboratory experiments, publishing peer-reviewed articles, and presenting findings at global conferences 🌏πŸ§ͺ. Dr. Parida’s professional track reflects a blend of academic rigor, collaborative teamwork, and project execution β€” all aligned with addressing pressing environmental issues 🌱. His exposure to workshops, technical visits, and interaction with premier institutes strengthens his ability to connect academic research with practical environmental solutions βš™οΈ.

πŸ”¬ Research Interest

Dr. Vishal Kumar Parida’s research interests revolve around developing sustainable, innovative solutions for wastewater treatment and environmental remediation β™»οΈπŸ’§. He specializes in designing visible light-assisted photocatalytic heterojunctions to degrade pharmaceutical and emerging contaminants, tackling pollution at its root with advanced nanomaterials πŸŒžβš—οΈ. His work explores combining moving bed biofilm reactors with continuous photocatalytic systems, aiming for synchronized, efficient removal of multiple pollutants from municipal and hospital wastewater πŸ₯🌿. Dr. Parida is also deeply interested in the broader implications of nanomaterials, hybrid catalysts, and immobilized biocatalysts for real-world scalability. Through detailed experimental design, literature review, and data analysis, he seeks to bridge lab research with sustainable, deployable technologies that benefit communities and ecosystems alike πŸŒπŸ”.

πŸ† Awards and Honors

Dr. Parida’s dedication to impactful research has earned him recognition through high-impact journal publications and international conference presentations πŸŒŸπŸ“–. His scholarly contributions to prestigious journals like Chemical Engineering Journal and Chemosphere reflect the quality and relevance of his work πŸ“°βœ¨. He has also showcased his research innovations at leading platforms such as the American Chemical Society and EUROMAT, gaining global peer acknowledgment 🌍🎀. Qualifying the GATE exam in Civil Engineering further highlights his academic competitiveness and commitment to technical excellence πŸŽ“πŸ…. While his journey is still growing, these achievements demonstrate his potential as a young innovator poised to make significant contributions to sustainable environmental management and advanced wastewater treatment technologies πŸ’‘πŸŒ±.

πŸ§‘β€πŸ”¬ Research Skills

Dr. Parida brings a comprehensive skill set essential for advanced environmental research πŸ”¬πŸ“ˆ. His expertise spans experimental design, advanced lab techniques, reactor fabrication, and synthesis of complex photocatalytic materials βš—οΈπŸ§ͺ. He is proficient in statistical analysis, critical literature review, and scientific writing, ensuring his research is robust and impactful πŸ“šπŸ—‚οΈ. Beyond the lab, he excels in proofreading, editing, and project proposal development β€” key for securing funding and driving collaborative projects forward πŸ’ΌπŸ€. His adaptability, perseverance, and critical thinking help him navigate challenges, while strong presentation skills make him an effective communicator of complex ideas 🌍🎀. By mentoring students and collaborating with renowned experts, Dr. Parida continuously enhances his capacity as a catalyst for innovative environmental solutions πŸŒΏπŸ’‘.

Publications Top Note πŸ“

Title: Visible light-assisted degradation of sulfamethoxazole on 2D/0D sulfur-doped Biβ‚‚O₃/MnOβ‚‚ Z-scheme heterojunction immobilized photocatalysts
Authors: Parida, V.K., Srivastava, S.K., Chowdhury, S., Gupta, A.K.
Year: 2023
Source: ACS Langmuir
Citation: Langmuir 39 (51), 18846–18865, 2023. [DOI: Not provided]

Title: Synchronous removal of pharmaceutical contaminants from municipal and hospital wastewater using a moving bed biofilm reactor-filtration unit coupled with a continuous photocatalytic reactor
Authors: Parida, V.K., Gnanaguru, M.V.L., Srivastava, S.K., Chowdhury, S., Gupta, A.K.
Year: 2023
Source: RSC Environmental Science and Pollution Research
Citation: RSC Env. Sci. Poll. Res., 2023. [DOI: Not provided]

Title: Emerging contaminants in wastewater: A critical review on occurrence, existing legislations, risk assessment, and sustainable treatment alternatives
Authors: Parida, V.K., Saidulu, D., Majumder, A., Srivastava, A., Gupta, B., Gupta, A.K.
Year: 2021
Source: Journal of Environmental Chemical Engineering
Citation: Journal of Environmental Chemical Engineering 9, 105966, 2021. [DOI: Not provided]

Title: An assessment of hospital wastewater and biomedical waste generation, existing legislations, risk assessment, treatment processes, and scenario during COVID-19
Authors: Parida, V.K., Sikarwar, D., Majumder, A., Gupta, A.K.
Year: 2022
Source: Journal of Environmental Management
Citation: Journal of Environmental Management 308, 114609, 2022. [DOI: Not provided]

=Title: A review on nanomaterial-based heterogeneous photocatalysts for removal of contaminants in water
Authors: Parida, V.K., Srivastava, S.K., Gupta, A.K., Rawat, A.
Year: 2023
Source: Materials Express
Citation: Materials Express 13 (1), 2023. [DOI: Not provided]

=Title: Novel 3D plate-like g-C₃Nβ‚„/BiOCl heterojunction as a highly efficient photocatalyst for the degradation of carbofuran in wastewater under visible light irradiation
Authors: Parida, V.K., Kumar, Y., Das, C., Das, S., Sen, S.
Year: 2024
Source: Chemical Engineering Journal
Citation: Chemical Engineering Journal 499, 155930, 2024. [DOI: Not provided]

Title: A facile synthesis of 2D/0D Biβ‚‚O₃/MnOβ‚‚ Z-scheme heterojunction for enhanced visible light-assisted photocatalytic degradation of acetaminophen
Authors: Parida, V.K., Srivastava, S.K., Chowdhury, S., Gupta, A.K.
Year: 2023
Source: Chemical Engineering Journal
Citation: Chemical Engineering Journal 472, 144969, 2023. [DOI: Not provided]

Title: Facile synthesis of a 2D/3D Z-scheme Cu-g-C₃Nβ‚„/BiOBr heterojunction for enhanced photocatalytic degradation of ciprofloxacin under visible light irradiation
Authors: Parida, V.K., Dhakad, R., Chowdhury, S., Gupta, A.K.
Year: 2023
Source: Journal of Environmental Chemical Engineering
Citation: Journal of Environmental Chemical Engineering 11 (6), 111569, 2023. [DOI: Not provided]

Title: A critical assessment of SARS-CoV-2 in aqueous environment: Existence, detection, survival, wastewater-based surveillance, inactivation methods, and effective management of COVID-19
Authors: Parida, V.K., Saidulu, D., Bhatnagar, A., Gupta, A.K., Mohammad, S.A.
Year: 2023
Source: Chemosphere
Citation: Chemosphere 327, 138503, 2023. [DOI: Not provided]

Title: Treatment of saline wastewater using physicochemical, biological, and hybrid processes: Insights into inhibition mechanisms, treatment efficiencies, and performance enhancement
Authors: Srivastava, A., Parida, V.K., Majumder, A., Gupta, B., Gupta, A.K.
Year: 2021
Source: Journal of Environmental Chemical Engineering
Citation: Journal of Environmental Chemical Engineering 9 (4), 105775, 2021. [DOI: Not provided]

Title: Insights into the performance of binary heterojunction photocatalysts for degradation of refractory pollutants
Authors: Gnanaguru, M.V.L., Parida, V.K., Ghangrekar, M.M., Gupta, A.K., Chowdhury, S., Gupta, A.K.
Year: 2024
Source: Environmental Science and Pollution Research
Citation: Environmental Science and Pollution Research, 2024. [DOI: Not provided]

Title: Insights into the synthetic dye contamination in textile wastewater: Impacts on aquatic ecosystems and human health, and eco-friendly remediation strategies for environmental sustainability
Authors: Parida, V.K., Singh, N., Priyadarshini, M., Kumari, P., Datta, D., Tambi, A.
Year: 2025
Source: Journal of Industrial and Engineering Chemistry
Citation: Journal of Industrial and Engineering Chemistry, 2025. [DOI: Not provided]

Title: Assessment of water, sediment, and fish contamination by metals in the lentic ecosystems of a mineral-rich state in India
Authors: Kumari, P., Parida, V.K., Raj, D., Kumar, P., Kumari, P., Narayan, M., Gupta, U.
Year: 2025
Source: Biological Trace Element Research
Citation: Biological Trace Element Research 1–16, 2025. [DOI: Not provided]

Title: A critical review of pesticides in aquatic environment: Current trends, environmental impacts, and advances in analytical extraction techniques
Authors: Datta, D., Biswas, B., Lodh, A., Parida, V.K., Goel, S.
Year: 2025
Source: Talanta
Citation: Talanta 293, 128094, 2025. [DOI: Not provided]

βœ… Conclusion

In conclusion, Dr. Vishal Kumar Parida stands out as an emerging leader dedicated to addressing critical environmental challenges through cutting-edge research and innovative technologies πŸŒπŸ”¬. With a robust academic background, strong professional experience, and a clear focus on sustainable wastewater treatment, he demonstrates the expertise and passion needed to drive real change πŸ’§β™»οΈ. His impressive research outputs, global engagement, and mentoring reflect his commitment to shaping a cleaner, healthier world. As he continues to expand his impact through interdisciplinary collaboration and practical applications, Dr. Parida truly exemplifies the spirit of an Innovation Catalyst β€” inspiring sustainable practices and pioneering solutions for complex environmental problems today and for the future πŸŒΏπŸš€.