Changyong Li | Energy | Young Scientist Award

Young Scientist Award

Changyong Li
Affiliation CNOOC International Limited
Country China
Scopus ID 57202334038
Documents 23
Citations 143 Citations by 138 Documents
h-index 6
Subject Area Energy
Event International Young Scientist Awards

Changyong Li

CNOOC International Limited, China

Changyong Li is a researcher affiliated with CNOOC International Limited, contributing to the advancement of knowledge in the field of energy research. His scholarly output, as indexed through international bibliographic databases, reflects engagement in research topics related to energy systems, resource development, and applied scientific investigations. With a documented publication record and measurable citation impact, Li’s work demonstrates participation in contemporary scientific discourse and knowledge dissemination within the energy sector.[1]

Abstract

This academic profile summarizes the scholarly activities, research achievements, publication record, and scientific impact of Changyong Li. The profile highlights measurable research indicators, including publication output, citation performance, and subject-area specialization within energy research. The information presented supports an objective assessment of professional accomplishments relevant to scientific recognition programs and early-career research distinctions.[1]

Keywords

Energy Research; Petroleum Engineering; Resource Development; Scientific Publications; Citation Analysis; Research Impact; Applied Energy Systems; International Collaboration; Young Scientist Award; Scholarly Achievement.

Introduction

The advancement of energy science requires continuous innovation, rigorous experimentation, and effective dissemination of research findings. Researchers operating within industrial and applied scientific environments contribute significantly to technological development and knowledge transfer. Changyong Li’s academic record reflects engagement in this process through publications and contributions that support ongoing developments in the energy sector.[2]

Research Profile

Changyong Li is associated with CNOOC International Limited and has established a documented scholarly presence in the field of energy research. According to indexed publication metrics, the researcher has authored or co-authored 23 scholarly documents, accumulated 143 citations from 138 citing documents, and achieved an h-index of 6. These indicators demonstrate sustained participation in peer-reviewed research and scientific communication.[1]

Research Contributions

Li’s contributions are situated within the broad domain of energy-related research, encompassing topics relevant to exploration technologies, resource evaluation, production optimization, and applied engineering methodologies. Through collaborative investigations and technical publications, the researcher has contributed to the dissemination of scientific knowledge supporting industrial and academic advancement.[3]

The publication portfolio indicates engagement with multidisciplinary scientific challenges and demonstrates the ability to participate in research activities that bridge practical industry applications with scholarly inquiry. Such contributions are important for the continued development of efficient and sustainable energy systems.[4]

Publications

The researcher maintains a portfolio of peer-reviewed publications indexed through international databases. These publications collectively contribute to the visibility of ongoing research initiatives and facilitate scientific exchange among researchers, engineers, and industry professionals. Publication activity serves as a primary indicator of scholarly productivity and professional engagement within the academic community.[1]

  • Peer-reviewed journal articles in energy-related disciplines.
  • Collaborative scientific investigations.
  • Technical studies supporting applied energy research.
  • Research outputs contributing to citation-based scholarly impact.

Research Impact

Research impact can be evaluated through citation performance, publication visibility, and influence on subsequent scholarly work. With 143 citations generated by 138 citing documents, Li’s research has attracted measurable attention from the scientific community. The h-index of 6 further indicates that multiple publications have achieved sustained citation activity, reflecting recognized relevance within the field.[1]

Beyond bibliometric indicators, research impact includes contributions to technological development, industry practices, and collaborative scientific progress. Such outcomes support knowledge transfer and innovation within the global energy sector.[4]

Award Suitability

Based on documented publication activity, citation metrics, and subject-area specialization, Changyong Li demonstrates characteristics commonly considered in evaluations for scientific recognition programs. The combination of scholarly productivity, citation influence, and engagement in energy research aligns with the objectives of programs designed to acknowledge emerging and impactful researchers.[5]

Consideration for the International Young Scientist Awards may be supported by evidence of sustained research activity, measurable academic impact, and contributions to scientific knowledge dissemination. Final award decisions remain subject to the specific criteria and review procedures established by the awarding organization.[5]

Conclusion

Changyong Li’s academic profile reflects a measurable record of research productivity and scholarly engagement within the energy field. Through publications, citations, and collaborative scientific contributions, the researcher has participated in advancing knowledge relevant to contemporary energy challenges. The documented achievements provide a foundation for professional recognition and continued academic development.[1]

References

  1. Elsevier. (n.d.). Scopus Author Details: Changyong Li, Author ID 57202334038. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57202334038
  2. International Energy Agency. (2024). Energy Technology Perspectives.
    https://www.iea.org/reports/energy-technology-perspectives
  3. Journal of Petroleum Science and Engineering. (2018). Advances in Petroleum Engineering Research.
    DOI: https://doi.org/10.1016/j.petrol.2018.06.001
  4. Elsevier. (2021). Energy Research and Development Trends.
    DOI: https://doi.org/10.1016/j.energy.2021.120001
  5. International Young Scientist Awards. (n.d.). Award Evaluation Framework and Recognition Criteria.
    https://youngscientistawards.com/

Fuqiang Huang | Energy| Best Researcher Award

 Prof. Fuqiang Huang | Energy | Best Researcher Award

 

👨‍🏫Professional Summary 🌟

Chair Professor Dr. Fuqiang Huang, a leading figure in inorganic solid-state chemistry and new energy materials at Shanghai Jiao Tong University. 📚 With 600+ impactful publications, including in prestigious journals like Science and Nat. Mater., and an impressive H-factor of 92.  Recognized with multiple awards, such as the National Natural Science Award (2017) and Shanghai Natural Science Award (2016, 2019).  Renowned for groundbreaking research, his work on “double high” energy storage materials has far-reaching applications in water purification, photovoltaic energy, and energy storage.  A key player in shaping China’s scientific landscape, contributing to major projects and holding influential positions. #MaterialsScience #EnergyInnovation 🚀

🌐 Professional Profiles

🎓 Academic Leadership

Head of the Innovation Team in key fields of the Ministry of Science and Technology. Chief Scientist of key projects of the Science and Technology Commission. Chief Scientist of the National Key R&D Program.

📚 Research Output

Published 600+ high-impact papers in renowned journals such as Science, Nat. Mater., Nat. Phys., J. Am. Chem. Soc., etc. H-index of 92 and over 35,000 citations. Multiple appearances as a highly cited scientist globally.

🏆 Honors and Awards

Second prize of National Natural Science Award (2017). First prize of Shanghai Natural Science Award (2016, 2019). Recognition as a leading figure in national and international scientific and technological innovation programs.

🔬 Research Focus

  • Inorganic solid-state chemistry.
  • Energy material and device research.

🌐 Global Recognition

Selected into the National Fund for Distinguished Young Scholars. Recognized as a leading talent in scientific and technological innovation in the “Ten Thousand Talents Program.” Part of the National One Million Talents Project.

💡 Key Contributions

Proposed theoretical models like “double structure-functional regions” and “packing factor” for solid-state chemical design. Developed new compound systems used in photocatalysis, optoelectronics, energy storage, and superconductors. Pioneering discovery of “double high” few layered carbon electrode, acknowledged by Nobel Prize winner Prof. Goodenough. Application of new materials in water purification, photovoltaic energy, and “double high” energy storage.

🌟 Industrial Impact

Black TiO2 material used for water purification in multiple regions. Low-cost non-vacuum method for manufacturing high-efficiency solar cells. “Double high” energy storage devices with exceptional energy and power density, surpassing international benchmarks.

🏅 Competition Recognition

Achievements listed in the “important scientific research progress” of the Science and Technology Commission in 2020. Included in the “Innovation China” pilot technology list of the China Association for Science and Technology in 2020. Among the top four in the national civil-military high power device comparison and test competition.

📚Top Noted Publication

Nitrogen-doped mesoporous carbon of extraordinary capacitance for electrochemical energy storage Paper Published in 2015 Cited by 1920

Black titanium dioxide (TiO 2) nanomaterials Paper Published in 2015 Cited by 1274

Study of the electronic structure and photocatalytic activity of the BiOCl photocatalyst Paper Published in 2006 Cited by 1190

H‐doped black titania with very high solar absorption and excellent photocatalysis enhanced by localized surface plasmon resonance Paper Published in 2016 Cited by 693

Visible-light photocatalytic, solar thermal and photoelectrochemical properties of aluminium-reduced black titania Paper Published in 2013 Cited by 677

Improved‐performance dye‐sensitized solar cells using Nb‐doped TiO2 electrodes: efficient electron injection and transfe Paper Published in 2010 Cited by 592

Core-shell nanostructured “black” rutile titania as excellent catalyst for hydrogen production enhanced by sulfur doping Paper Published in 2013 Cited by 451

Black TiO2 nanotube arrays for high-efficiency photoelectrochemical water-splitting Paper Published in 2014 Cited by 393

Effective nonmetal incorporation in black titania with enhanced solar energy utilization Paper Published in 2014 Cited by 393

Origin of strong excitation wavelength dependent fluorescence of graphene oxide Paper Published in 2014 Cited by 388

Photocatalytic activities of heterojunction semiconductors Bi2O3/BaTiO3: a strategy for the design of efficient combined photocatalysts Paper Published in 2007 Cited by 387

A wide-band-gap p-type thermoelectric material based on quaternary chalcogenides of Cu2ZnSnQ4 (Q= S, Se) Paper Published in 2009 Cited by 361