Yanqing Cui | Green Fuel | Innovative Research Award

Innovative Research Award

Yanqing Cui
Inner Mongolia University of Science and Technology

Yanqing Cui
Affiliation Inner Mongolia University of Science and Technology
Country China
Scopus ID 57204218726
Documents 49
Citations 1,011
h-index 18
Subject Area Green Fuel
Event Applied Scientist Awards
ORCID 0009-0000-4726-6234

Yanqing Cui is a researcher affiliated with Inner Mongolia University of Science and Technology in China whose documented research profile is associated with the subject area of green fuel. The supplied Scopus record identifies 49 documents, 1,011 citations, and an h-index of 18. These bibliometric indicators provide a quantitative overview of the research output and citation visibility represented in the supplied profile. [1]

Abstract

This article presents a bibliometric and academic profile of Yanqing Cui, a researcher at Inner Mongolia University of Science and Technology, China, whose stated subject area is green fuel. The supplied research information records 49 Scopus-indexed documents, 1,011 citations, and an h-index of 18. [1] The profile is considered in relation to research output, scholarly visibility, publication activity, and the relevance of green-fuel research to contemporary energy and sustainability studies. The available bibliometric indicators are descriptive measures of indexed scholarly activity and should be interpreted in conjunction with the underlying publications and research contributions.

Keywords

Green fuel; Sustainable energy; Renewable fuels; Energy research; Research impact; Bibliometrics; Environmental sustainability

Introduction

Green-fuel research encompasses scientific and technological approaches concerned with producing, converting, improving, and evaluating fuels with reduced environmental impacts. Research in this field intersects with energy conversion, resource utilization, environmental engineering, chemical processes, and sustainable development. The subject is relevant to efforts to diversify energy systems and develop alternatives to conventional fossil-fuel-based energy sources.[1]

Research Profile

The available profile identifies Yanqing Cui as a researcher at Inner Mongolia University of Science and Technology, China, with a research subject area listed as green fuel. The supplied Scopus author identifier is 57204218726. The record contains 49 documents, 1,011 citations, and an h-index of 18. [1] The ORCID identifier supplied for the profile is 0009-0000-4726-6234, providing an additional persistent identifier for distinguishing the researcher within scholarly communication systems. [2]

Research Contributions

Based on the supplied subject classification, Cui’s research profile is situated within green-fuel research. This field addresses the development and assessment of fuel pathways intended to support energy transition and more sustainable resource use. Specific contributions should be evaluated through individual publications, methodologies, experimental or computational findings, and independent assessments rather than through bibliometric indicators alone.

Publications

The supplied Scopus profile reports 49 documents associated with the researcher. [1] A complete publication-level assessment would require examination of the individual records, including article titles, journals or proceedings, publication dates, co-authorship, citation counts, and persistent identifiers such as DOIs. Because the input data does not provide a complete publication list, individual publications are not attributed here without direct bibliographic verification. [3]

Research Impact

The reported 1,011 Scopus citations indicate that publications within the supplied author record have accumulated substantial citation activity. [1] Citation counts can provide one quantitative indicator of scholarly visibility, while their interpretation depends on factors including discipline, publication age, collaboration patterns, citation practices, and database coverage.[4]

Award Suitability

The Applied Scientist Awards recognition category identified in the supplied information is the Innovative Research Award. Cui’s documented research area of green fuel and the reported Scopus indicators provide relevant factual information for consideration under a research-recognition framework. [1] [5] Suitability for an award should be determined using the applicable award criteria and a substantive review of the candidate’s research contributions, originality, supporting evidence, and relevance to the award category.

Conclusion

Yanqing Cui is affiliated with Inner Mongolia University of Science and Technology and is associated with research in green fuel. The supplied Scopus profile records 49 documents, 1,011 citations, and an h-index of 18. [1] These indicators document a measurable record of indexed scholarly activity and citation visibility. Further evaluation of the researcher’s contributions would benefit from detailed examination of individual publications, research methods, findings, collaborations, and practical or scientific applications.

References

  1. Elsevier. (n.d.). Scopus author details: Yanqing Cui, Author ID 57204218726. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57204218726
  2. Y Cui, H Liu, Q Wang, et al. (2022). Investigation on the ignition delay prediction model of multi-component surrogates based on back propagation (BP) neural network.
    https://www.sciencedirect.com/science/article/pii/S0010218021005952
  3. Wen, H Liu, S Zhang, Z Yue, Y Cui, et al. (2025). A study of ammonia combustion induced by high reactivity fuel based on optical diagnostics and chemical kinetic analyses.
    https://www.sciencedirect.com/science/article/pii/S0010218024006059
  4. Y Wang, H Liu, T Fang, Y Cui, et al. (2024). Effects of oxygen enrichment on diesel spray flame soot formation in O2/Ar atmosphere.
    https://www.sciencedirect.com/science/article/pii/S0010218023006181
  5. M Wen, H Liu, Y Cui, Z Ming, L Feng, M Yao. (2023). Optical diagnostics of methanol active-thermal atmosphere combustion in compression ignition engine.
    https://www.sciencedirect.com/science/article/pii/S0016236122028605

Meysam Heydari Gharahcheshmeh | Sustainable Energy | Best Researcher Award

Best Researcher Award

Meysam Heydari Gharahcheshmeh
San Diego State University, United States

Meysam Heydari Gharahcheshmeh
Affiliation San Diego State University
Country United States
Scopus ID 26667621700
Documents 35
Citations 1,868
h-index 21
Subject Area Sustainable Energy
Event Applied Scientist Awards
ORCID 0000-0001-5664-3759

Meysam Heydari Gharahcheshmeh is a researcher affiliated with San Diego State University, United States, whose scholarly profile is presented in connection with the Best Researcher Award. His research record includes work on conjugated conducting and semiconducting polymers, chemical vapor deposition, thin-film engineering, electrochemical energy systems, and energy-device applications. His published research connects materials processing and nanoscale structure with applications in energy conversion, energy storage, sensing, and related technologies. [1] [2]

Abstract

Meysam Heydari Gharahcheshmeh is a researcher whose published work is associated with advanced polymer materials, oxidative chemical vapor deposition, thin-film engineering, and energy-related device technologies. His research has addressed the fabrication and structural engineering of conjugated conducting and semiconducting polymers, with particular attention to processing methods and their influence on electrical, optical, electrochemical, and thermoelectric properties. [1] [2]

His publication record includes research on polymer-based energy devices, redox flow batteries, perovskite solar-cell integration, and chemical vapor deposition approaches for functional thin films. Such work provides a research basis for considering materials processing and nanoscale engineering within the broader context of sustainable energy technologies. [3] [4]

Keywords

Sustainable Energy; Conjugated Polymers; Chemical Vapor Deposition; Conducting Polymers; Semiconducting Polymers; Energy Devices; Energy Storage; Thermoelectric Materials; Thin-Film Engineering; Nanostructure Engineering

Introduction

The research profile of Meysam Heydari Gharahcheshmeh is situated at the intersection of materials science, chemical and mechanical engineering, polymer processing, and energy-device development. His publications demonstrate an emphasis on oxidative chemical vapor deposition (oCVD), a vapor-phase technique used to fabricate functional polymer films and coatings. The approach has been examined for applications where conformal thin films, controlled morphology, and solvent-free processing are relevant to device fabrication. [2] [4]

Research Profile

The available publication evidence indicates a sustained interest in the relationship between polymer morphology, deposition conditions, electrical properties, and device performance. A 2019 publication examined device fabrication based on oCVD synthesis of conducting polymers and related conjugated organic materials, describing the relevance of these materials to electronic, optoelectronic, electrochemical, and energy-storage or harvesting applications. [5]

Research Contributions

The research contributions represented in the available literature can be organized around several interconnected areas:

  • Vapor-phase polymer processing: Development and analysis of oxidative chemical vapor deposition approaches for producing conducting and semiconducting polymer films. [1]
  • Energy-device materials: Investigation of conjugated polymers and PEDOT-based materials for applications involving energy storage, conversion, and harvesting. [2]
  • Electrochemical energy systems: Application of ultrathin conformal polymer coatings to porous carbon electrodes for redox flow battery systems. [3]

Publications

Selected publications illustrate the progression of the research program from polymer deposition and device fabrication toward specialized energy applications. The following works are directly associated with Meysam Heydari Gharahcheshmeh and provide representative evidence of the themes described in this profile.

  1. Heydari Gharahcheshmeh, M., & Gleason, K. K. (2019). Device Fabrication Based on Oxidative Chemical Vapor Deposition (oCVD) Synthesis of Conducting Polymers and Related Conjugated Organic Materials. Advanced Materials Interfaces, 6, 1801564. DOI: 10.1002/admi.201801564
  2. Heydari Gharahcheshmeh, M., et al. (2020). Ultrathin Conformal oCVD PEDOT Coatings on Carbon Electrodes Enable Improved Performance of Redox Flow Batteries. Advanced Materials Interfaces, 7, 2000855. DOI: 10.1002/admi.202000855

Research Impact

The supplied bibliometric profile reports 35 documents, 1,868 citations, and an h-index of 21. These indicators provide quantitative measures of publication activity and citation visibility, although they do not independently establish the quality or practical significance of individual contributions. A fuller assessment considers the nature of the publications, originality of methods, collaboration, reproducibility, and application of research findings. [3] [5]

Award Suitability

For the purposes of a Best Researcher Award profile, the available record provides several objective elements for consideration. These include a documented publication portfolio, citation activity, an h-index of 21, research addressing advanced materials and energy-device applications, and peer-reviewed publications with identifiable DOI records. [1] [3]

The research is particularly relevant to an applied-science recognition framework because it links materials processing and nanoscale engineering with functional devices and energy-related applications. Work spanning conducting polymers, thin-film fabrication, redox flow batteries, solar cells, and thermoelectric materials demonstrates a multidisciplinary research trajectory that can be evaluated in relation to originality, technical contribution, scholarly influence, and application potential. [2] [4] [5]

Conclusion

Meysam Heydari Gharahcheshmeh’s research profile reflects sustained scholarly activity in conducting and semiconducting polymers, oxidative chemical vapor deposition, thin-film engineering, and energy-related materials and devices. His publications connect fundamental materials and processing considerations with applications in energy storage, photovoltaic systems, thermoelectric technologies, and other functional-device contexts.

References

  1. L Sun, G Yuan, L Gao,M Heydari Gharahcheshmeh, et al. (2021). Chemical vapour deposition.
    https://www.nature.com/articles/s43586-020-00005-y
  2. Heydari Gharahcheshmeh, M., & Gleason, K. K. (2022). Recent Progress in Conjugated Conducting and Semiconducting Polymers for Energy Devices.
    https://doi.org/10.3390/en15103661
  3. M Heydari Gharahcheshmeh, KK Gleason. (2020). Texture and nanostructural engineering of conjugated conducting and semiconducting polymers.
    https://www.sciencedirect.com/science/article/pii/S2590049820300333
  4. Heydari Gharahcheshmeh, M., et al. (2021). Humidity‐Initiated Gas Sensors for Volatile Organic Compounds Sensing.
    https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/adfm.202101310
  5. Heydari Gharahcheshmeh, M., Dautel, B., & Chowdhury, K. (2025). Enhanced Carrier Mobility and Thermoelectric Performance by Nanostructure Engineering of PEDOT Thin Films Fabricated via the oCVD Method Using SbCl5 Oxidant.
    https://doi.org/10.1002/adfm.202570056