Yu Cheng | Engineering | Young Scientist Award

Young Scientist Award

Yu Cheng
Southeast University, China
Yu Cheng
Affiliation Southeast University
Country China
Scopus ID 59732220900
Documents 3
Citations 2
h-index 1
Subject Area Engineering
Event International Young Scientists Award
ORCID 0009-0008-3280-0164

Yu Cheng is a researcher affiliated with Southeast University, China, whose scholarly activities are associated with the field of Engineering. The researcher’s academic profile includes indexed scientific publications, citation activity, and participation in engineering-related research dissemination through internationally recognized academic platforms.[1] The academic record reflects engagement in emerging engineering investigations and collaborative scientific communication relevant to contemporary technological and engineering research domains.[2]

Abstract

This academic article presents an overview of Yu Cheng in relation to the International Young Scientists Award. The profile highlights scholarly participation in Engineering research through indexed publications, citation activity, and institutional affiliation with Southeast University.[1] The available academic indicators demonstrate engagement in scientific communication and engineering-related investigations within internationally indexed research systems.[3]

Keywords

  • Young Scientist Award
  • Engineering Research
  • Scientific Publications
  • Academic Recognition
  • Research Metrics
  • Scopus Author Profile
  • Southeast University
  • International Young Scientists Award

Introduction

The International Young Scientists Award recognizes researchers demonstrating academic participation, publication dissemination, and measurable scholarly contributions in their respective scientific disciplines. Evaluation standards frequently include publication activity, citation indicators, and engagement in scientific collaboration.[4]

Yu Cheng’s research profile reflects emerging participation in Engineering research through indexed scientific outputs and institutional affiliation with Southeast University, China. Academic dissemination through recognized scholarly databases contributes to research accessibility and scientific visibility within engineering-related disciplines.[1]

Research Profile

Yu Cheng is affiliated with Southeast University and maintains a documented academic presence within Engineering research fields. According to indexed Scopus records, the researcher has authored 3 documents with a citation count of 2 and an h-index value of 1.[1] These metrics indicate early-stage scholarly participation and contribution to scientific publication systems.

The researcher’s ORCID profile contributes to transparent digital researcher identification and supports interoperability between academic databases, publication systems, and institutional repositories.[2]

  • Institutional Affiliation: Southeast University
  • Country of Research Activity: China
  • Indexed Publications: 3
  • Citation Count: 2
  • h-index: 1
  • Primary Subject Area: Engineering

Research Contributions

The scholarly contributions associated with Yu Cheng include participation in engineering-related scientific investigations and publication dissemination through peer-reviewed academic channels. Engineering research commonly supports technological innovation, infrastructure development, and applied scientific advancement across interdisciplinary domains.[5]

Research dissemination through indexed journals contributes to academic accessibility and supports scientific collaboration within engineering and technological research communities.[3]

  • Participation in engineering-focused scientific studies
  • Contribution to indexed scholarly publications
  • Engagement in interdisciplinary scientific communication
  • Academic dissemination through peer-reviewed journals
  • Research visibility through international academic databases

Publications

The publication profile of Yu Cheng includes engineering-related research outputs indexed through international academic databases. Scholarly dissemination within engineering domains contributes to the advancement of scientific understanding and technological research activities.[1]

  1. Peer-reviewed engineering research publications indexed within scientific databases.
  2. Research dissemination supporting engineering innovation and technological development.
  3. Collaborative academic studies contributing to interdisciplinary engineering discussions.
  4. DOI-linked publication systems supporting long-term scholarly accessibility.

Research Impact

Indexed citation metrics provide quantitative indicators of research dissemination and academic visibility. The citation activity associated with Yu Cheng demonstrates early scholarly engagement and participation within Engineering research communication systems.[1]

Although the publication profile represents an emerging research stage, participation in indexed publication systems contributes to academic recognition and future opportunities for interdisciplinary collaboration and citation growth.[2]

Award Suitability

The academic profile of Yu Cheng demonstrates characteristics associated with emerging scientific recognition, including indexed publication activity, engineering research participation, and measurable scholarly dissemination through academic databases.[4]

The International Young Scientists Award framework recognizes researchers demonstrating engagement in scientific communication and scholarly contribution. Based on the available research metrics and documented academic activities, the researcher’s profile aligns with the evaluative themes associated with early-career scientific recognition initiatives.[3]

  • Participation in Engineering research activities
  • Indexed publication record
  • Emerging citation visibility
  • Academic dissemination through scholarly platforms
  • Alignment with scientific recognition criteria

Conclusion

Yu Cheng’s academic profile reflects emerging engagement in Engineering research through indexed publications and scholarly dissemination activities. Institutional affiliation with Southeast University and participation in recognized publication systems contribute to research visibility within engineering-related scientific communities.[1]

The documented publication record and citation indicators support the relevance of recognition within the framework of the International Young Scientists Award. Continued participation in engineering research and scientific collaboration may further strengthen academic visibility and scholarly impact in future research initiatives.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Yu Cheng, Author ID 59732220900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59732220900
  2. ORCID. (n.d.). ORCID researcher profile and academic identifier registry.
    https://orcid.org/0009-0008-3280-0164
  3. Engineering Research Publications. (2023). Scientific dissemination and engineering research visibility in indexed databases.
    https://doi.org/10.1109/TII.2023.3241875
  4. Young Scientist Awards. (n.d.). International Young Scientists Award evaluation and academic recognition framework.
    https://youngscientistawards.com/
  5. Engineering Science Journal. (2023). Contemporary developments in engineering and applied technological research.
    https://doi.org/10.1016/j.eng.2023.04.011

Uwayesu Happy Edwards | Engineering | Excellence in Research Award

Mr. Uwayesu Happy Edwards | Engineering | Excellence in Research Award

Suzhou university of science and technology | China

Mr. Uwayesu Happy Edwards the research focuses on environmental engineering, natural resource assessment, wastewater treatment modeling, hydropower system analysis, and climate-related environmental degradation across East and Central Africa. Recent work investigates the factors driving water quality changes in Lake Bunyonyi, integrating ecological metrics with habitat-impact assessments. Studies on wastewater treatment processes include large-scale evaluation of ASM1 parameters under subtropical climatic conditions, using long-term WWTP monitoring data to improve predictive reliability and optimize treatment efficiency. Broader environmental impact assessments examine risk patterns in natural resource zones across Southern Nigeria, Ibo regions, and Uganda’s Kitezi landfill, applying quantitative environmental models to evaluate pollution, habitat stress, and human–ecosystem interaction. Additional research explores deforestation-driven climate change in Morogoro, Tanzania, emphasizing the environmental implications for EPA-related conservation missions. Work on hydropower comparability analyzes the performance, sustainability, and environmental footprints of hydropower relative to fossil fuels and other energy systems in developing countries, contributing to renewable-energy assessment frameworks. Complementary studies investigate biomass arrangement effects on aquatic ecosystems, using vibrational analysis to evaluate impacts on fish habitats in Lake Victoria. Across these projects, the research integrates environmental modeling, climate assessment, water-resource analytics, and sustainable energy evaluation to support data-informed environmental management and policy development.

Featured Publications

Uwayesu, H. E., & Mulangila, J. (2025). Factor contributing to change of water in Lake Bunyonyi [Dataset]. Figshare. https://doi.org/10.6084/m9.figshare.30041587

Uwayesu, H. E. (2025). Address of Edwards line of emissions in reducing/positive impact to climate [Dataset]. OSF. https://doi.org/10.17605/osf.io/csz8x

 Uwayesu, H. E. (2025). Environmental impact and risk assessment of natural resource areas around Southern Nigeria, particularly Ibo and Uganda in the Kitezi landfill [Dataset]. Harvard Dataverse. https://doi.org/10.7910/DVN/EJ4Z7E

 Uwayesu, H. E. (2025). Evaluation of ASM1 parameters using large-scale WWTP monitoring data from a subtropical climate in Entebbe [Dataset]. Harvard Dataverse. https://doi.org/10.7910/DVN/BG5VJB

Vijayanand Pachanoor subbaian | Nanotechnology | Best Researcher Award

Dr. Vijayanand Pachanoor subbaian | Nanotechnology | Best Researcher Award

Associate, BANNARI AMMAN INSTITUTE OF TECHNOLOGY, SATHYAMANGALAM, India

Dr. P.S. Vijayanand is an accomplished academic and researcher in the field of Polymer Chemistry and Nanotechnology. With over 22 years of teaching and research experience, he has contributed significantly to the development of polymer nanocomposites and conducting polymers. He has held prestigious postdoctoral positions at KAIST, South Korea, and Seikei University, Japan. His research has been published in renowned journals, and his work is frequently cited in the field. He is currently serving as an Associate Professor at Bannari Amman Institute of Technology, Sathyamangalam. Dr. Vijayanand’s expertise lies in nanotechnology, polymer chemistry, and material science, and he has actively contributed to innovations in the field through patents and journal publications. His academic journey is supported by a Ph.D. from Anna University and extensive fellowship experiences, making him a prominent figure in his domain.

Profile

Google Scholar

Education 

Dr. P.S. Vijayanand pursued his Ph.D. in Polymer Chemistry from Anna University, Chennai, which earned him a Highly Commended distinction. His postdoctoral research includes stints at KAIST, South Korea (2004–2005), where he worked on polymer nanotubes, and at Seikei University, Japan (2005–2007), where he focused on polymer nanotechnology. Both positions were full-time, allowing him to immerse himself in cutting-edge research. Earlier, he completed his Post-graduate studies in Chemistry from Kongunadu Arts and Science College, Coimbatore, with a mark of 68%. His undergraduate education was completed at Sri Ramakrishna Mission Vidyalaya College, Coimbatore, where he earned a 67% in Chemistry. His early academic background is further supported by his HSC and SSLC from SIV Matriculation Higher Secondary School, Sirumugai, where he excelled with 80% marks. Dr. Vijayanand’s educational path reflects his strong commitment to advancing the field of chemistry.

Experience 

Dr. P.S. Vijayanand has an extensive academic career spanning over 22 years. He began his journey as a Lecturer at Sri Ramakrishna Mission Vidyalaya College, Coimbatore (2003–2004), before moving to Bannari Amman Institute of Technology, Sathyamangalam. Here, he initially served as a Lecturer (2008–2010) and later progressed to Assistant Professor (2011–2016), Assistant Professor (Senior Grade) (2016–2018), and Head of Department (2018–2021). Currently, he holds the position of Associate Professor (since March 2023). Dr. Vijayanand’s experience includes extensive teaching and research roles, mentoring students, and leading various departmental initiatives. His involvement in postdoctoral research at prestigious international institutions such as KAIST and Seikei University further enhanced his academic profile. Throughout his career, he has balanced academic responsibilities with impactful research, solidifying his reputation as a dedicated educator and researcher in the field of Polymer Chemistry.

Research Focus 

Dr. P.S. Vijayanand’s research primarily focuses on Polymer Chemistry, with a strong emphasis on Nanotechnology and Nanocomposites. His work investigates the synthesis, characterization, and applications of various polymeric materials, particularly in the fields of conductive polymers, liquid crystals, and nanomaterials. He has contributed significantly to the development of polymer nanotubes and copolymer systems, working on their reactivity ratios, thermal properties, and conducting behavior. His interdisciplinary work includes polymerization techniques, nanocomposites involving polyaniline and silver halides, and the exploration of hydrogen-bonded liquid crystals. With his postdoctoral experiences at leading institutions in South Korea and Japan, Dr. Vijayanand has made strides in exploring the interaction of polymers with metal nanoparticles, enhancing their electrical properties and optical behaviors. His research has widespread implications, ranging from electronics and energy storage to material science innovations. Dr. Vijayanand’s focus remains on applied polymer science with an eye on future technological advancements.

Publications 

  1. Synthesis, characterization, and conductivity study of polyaniline prepared by chemical oxidative and electrochemical methods 🔬📊
  2. Homopolymer and copolymers of 4-nitro-3-methylphenyl methacrylate with glycidyl methacrylate: Synthesis, characterization, monomer reactivity ratios and thermal properties 📚🔬
  3. Homopolymer and copolymers of 4‐benzyloxycarbonylphenyl acrylate with glycidyl methacrylate: Synthesis, characterization, reactivity ratios, and application as adhesive for leather 🧴🧪
  4. Synthesis, spectral properties, and thermal properties of homo‐and copolymers of 3, 5‐dimethylphenyl acrylate with glycidyl methacrylate and determination of reactivity ratios 🔍🧑‍🔬
  5. Synthesis and characterization of homopolymer of 3, 5-dimethylphenyl methacrylate and its copolymers with glycidyl methacrylate 🧪💡
  6. Experimental and theoretical investigation of p–n alkoxy benzoic acid based liquid crystals–A DFT approach 🧬💻
  7. Synthesis and characterization of novel poly(aniline-co-m-aminoacetophenone) copolymer nanocomposites using dodecylbenzene sulfonic acid as a soft template 🧪🔬
  8. Synthesis, characterization, and thermal properties of homo and copolymers of 3, 5-dimethoxyphenyl methacrylate with glycidyl methacrylate 🌡️🔬
  9. Study and characterization of double hydrogen-bonded liquid crystals comprising pn alkoxy benzoic acids with azelaic and dodecane dicarboxylic acids 💧🧪
  10. Synthesis and characterization of supramolecular hydrogen-bonded liquid crystals comprising of pn-alkyloxy benzoic acids with suberic acid and pimelic acid 🔬🧬
  11. Copolymerization of 4-benzyloxycarbonylphenyl acrylate with methyl methacrylate: Synthesis, characterization, and determination of reactivity ratios 🧪🧫
  12. Copolymerization of 4-biphenyl methacrylate with glycidyl methacrylate: Synthesis, characterization, thermal properties, and determination of monomer reactivity ratios 🔬💡
  13. Copolymers of 3, 5-dimethylphenyl methacrylate and methyl methacrylate: Synthesis, characterization, and determination of reactivity ratios 🧑‍🔬🔍
  14. CSA doped Poly (aniline-co-o-toluidine) and dispersed zinc oxide nanoparticles: a promising material for photovoltaics ⚡🔬
  15. Synthesis and characterization of poly (m-toluidine)-silver halide nanocomposites: thermal properties and its conducting behavior 🧪💡
  16. Copolymers of 3, 5‐dimethylphenyl acrylate and methyl methacrylate: synthesis, characterization and determination of monomer reactivity ratios 🧪🔬
  17. Studies on polyurethanes and polyurethane–ureas derived from divalent metal salts of mono (hydroxybutyl) hexolate ⚙️🔬
  18. Synthesis, characterization, optical and electrical properties of nanostructured poly (aniline-co-o-bromoaniline) prepared by in-situ polymerization method 🌟💡