Mubarak Danmaraya | Green Energy | Best Researcher Award

Best Researcher Award

Mubarak Danmaraya — University of Electronic Science and Technology of China

Mubarak Danmaraya
Affiliation University of Electronic Science and Technology of China
Country China
Scopus ID 59510060400
Subject Area Green Energy
Event Global Sensor Awards
ORCID 0000-0003-4628-315X

Mubarak Danmaraya is a researcher affiliated with the University of Electronic Science and Technology of China whose stated subject area is Green Energy. His researcher profile is associated with Scopus Author ID 59510060400 and ORCID identifier 0000-0003-4628-315X. These persistent identifiers provide mechanisms for distinguishing an author’s scholarly record and connecting research outputs across academic information systems.[1][2]

Abstract

The Best Researcher Award profile recognizes Mubarak Danmaraya in connection with research associated with Green Energy at the University of Electronic Science and Technology of China. The profile identifies the researcher through Scopus Author ID 59510060400 and ORCID 0000-0003-4628-315X. Within the context of the Global Sensor Awards, the recognition provides an academic profile through which the researcher’s institutional affiliation, subject area, and persistent scholarly identifiers can be presented in a structured format.[1][2]

Keywords

  • Mubarak Danmaraya
  • Best Researcher Award
  • Green Energy
  • Renewable Energy Research
  • Energy Technologies
  • University of Electronic Science and Technology of China
  • Global Sensor Awards
  • Sustainable Energy

Introduction

Green energy research encompasses technological and scientific approaches directed toward energy generation, conversion, storage, efficiency, and sustainability. Research in this area intersects with engineering, materials science, environmental studies, information technology, and increasingly with sensing and monitoring systems. Reliable measurement and monitoring can support the characterization and optimization of energy-related processes, making sensing technologies relevant to several aspects of modern energy research.

Mubarak Danmaraya is identified in the supplied academic profile as being affiliated with the University of Electronic Science and Technology of China and working within the subject area of Green Energy. The profile is additionally connected to internationally recognized scholarly identification systems, including Scopus and ORCID, which can facilitate the attribution and discovery of academic publications.[1][2]

Research Profile

The available profile information places Mubarak Danmaraya within the broad field of Green Energy. The University of Electronic Science and Technology of China provides the stated institutional affiliation, while Scopus Author ID 59510060400 and ORCID 0000-0003-4628-315X serve as persistent identifiers associated with the researcher profile.[1][2]

The supplied information does not specify a complete publication list, citation count, document count, h-index, individual research projects, or detailed methodological contributions. Consequently, those metrics and research-specific details are not inferred in this article. A complete assessment of scholarly output would require examination of the researcher’s current bibliographic record and relevant primary publications.

Research Contributions

On the basis of the supplied profile, the principal documented research domain associated with Mubarak Danmaraya is Green Energy. Green-energy research can involve the development and evaluation of technologies intended to improve energy sustainability, conversion efficiency, resource utilization, and environmental performance. Specific contributions, however, should be attributed to individual publications or documented projects rather than inferred solely from a subject-area designation.

  • Research affiliation with the University of Electronic Science and Technology of China.
  • Scholarly identification through Scopus Author ID 59510060400.
  • Persistent researcher identification through ORCID 0000-0003-4628-315X.
  • Academic subject-area association with Green Energy.
  • Participation in an academic recognition context associated with the Global Sensor Awards.

Publications

No individual publication titles, journal names, publication years, article identifiers, or DOI records were supplied for this profile. Accordingly, no specific publication is attributed to Mubarak Danmaraya without bibliographic verification. The researcher’s Scopus profile can be consulted for the current indexed publication record, subject to the coverage and author-disambiguation practices of the database.[1]

For formal academic documentation, publication details should be verified against the original journal or conference record and, where applicable, the corresponding DOI registration record. This approach helps distinguish verified scholarly outputs from records that may share similar author names.

Research Impact

The supplied information establishes the researcher’s institutional affiliation and broad subject area but does not provide sufficient bibliometric data to quantify research impact. Citation counts, document counts, and h-index values have therefore been marked as not provided rather than estimated. Such indicators can be useful for describing scholarly visibility, but they represent particular bibliometric measures and should be interpreted alongside publication quality, research context, collaboration, and disciplinary norms.

In Green Energy, research impact may also extend beyond bibliometric indicators through contributions to energy efficiency, sustainable technologies, resource management, environmental performance, or technological development. Evidence for any specific impact should be established through documented publications, projects, patents, deployments, policy applications, or other verifiable research outcomes.

Award Suitability

The supplied profile identifies Green Energy as Mubarak Danmaraya’s subject area and the Global Sensor Awards as the associated event. This provides a documented basis for presenting the researcher in an award profile focused on academic work connected with energy and sensing-related research contexts. A comprehensive award assessment would ordinarily consider the originality, methodological rigor, publication record, documented research outcomes, relevance to the award category, and evidence of scholarly or practical contribution.

For the purposes of this profile, the following characteristics are supported by the supplied information:

  • An identified academic affiliation with the University of Electronic Science and Technology of China.
  • A stated research subject area of Green Energy.
  • A persistent Scopus author identifier.
  • A persistent ORCID researcher identifier.
  • Association with the Global Sensor Awards recognition framework.

Further evaluation would require verified scholarly evidence, including relevant publications, research outputs, citation information, and documented contributions. The absence of such information in the supplied profile should not be interpreted as evidence for or against the researcher’s broader academic record.

Conclusion

Mubarak Danmaraya is presented in this academic recognition profile as a researcher affiliated with the University of Electronic Science and Technology of China and associated with the subject area of Green Energy. The profile is supported by Scopus Author ID 59510060400 and ORCID 0000-0003-4628-315X, providing persistent identifiers for scholarly attribution and research discovery.[1][2]

The Best Researcher Award profile provides a structured academic overview while avoiding unsupported bibliometric or publication claims. Additional research outputs and impact measures can be incorporated when verified bibliographic and institutional evidence is available.

References

  1. Elsevier. (n.d.). Scopus author details: Mubarak Danmaraya, Author ID 59510060400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59510060400
  2. ORCID. (n.d.). Mubarak Danmaraya — ORCID record 0000-0003-4628-315X. ORCID.
    https://orcid.org/0000-0003-4628-315X
  3. International Organization for Standardization. (n.d.). ISO 690: Information and documentation — Guidelines for bibliographic references and citations to information resources.
    https://www.iso.org/standard/43320.html

Mario Morales-Máximo | Bioenergy | Research Excellence Award

Dr. Mario Morales-Máximo | Bioenergy | Research Excellence Award

University Vasco de Quiiroga | Mexico

Featured Publications

A Prospective Study of the Exploitation of Pelagic Sargassum spp. as a Solid Biofuel Energy Source (2020).
LB López-Sosa, JJ Alvarado-Flores, JC Corral-Huacuz · Applied Sciences 10(23), 8706 · Citations: 71

Exploitation of Wood Waste of Pinus spp for Briquette Production: A Case Study in the Community of San Francisco Pichátaro, Michoacán, Mexico (2020).
M Morales-Máximo, VM Ruíz-García, LB López-Sosa · Applied Sciences 10(8), 2933 · Citations: 56

Briquettes from Pinus spp. Residues: Energy Savings and Emissions Mitigation in the Rural Sector (2022).
M Morales-Máximo, JG Rutiaga-Quiñones, O Masera · Energies 15(9), 3419 · Citations: 35

A new methodology for the development of appropriate technology: A case study for the development of a wood solar dryer (2019).
LB López-Sosa, J Núñez-González, A Beltrán, M Morales-Máximo · Sustainability 11(20), 5620 · Citations: 30

Characterization of Agricultural Residues of Zea mays for Their Application as Solid Biofuel (2022).
CN Morales-Máximo, LB López-Sosa, JG Rutiaga-Quiñones · Energies 15(19), 6870 · Citations: 28

Dr. Shijing Luo | Energy Harvesting Awards | Best Researcher Award

Dr. Shijing Luo | Energy Harvesting Awards | Best Researcher Award 

Dr. Shijing Luo, Sichuan University, China

Dr. Shijing Luo is an Assistant Professor in the Department of Material Science and Engineering at Sichuan University. He holds a Ph.D. in Mechanical Engineering from the University of Hong Kong, where he conducted pioneering research under the supervision of Prof. Dennis Y.C. Leung, supported by a prestigious postgraduate scholarship. He also earned his Master’s degree from the University of Pittsburgh and a Bachelor’s degree from Harbin Institute of Technology, both in the field of Material Science and Engineering. Dr. Luo’s research focuses on advanced energy conversion and storage technologies, including fuel cells, metal-air and metal-ion batteries, rechargeable batteries, flow batteries, and microfluidic systems. He has published extensively in top-tier journals such as Energy Conversion and Management, Applied Energy, and the Journal of Power Sources, with impactful studies on microfluidic fuel cells and flexible paper-based energy devices. In addition to his research, Dr. Luo has demonstrated a strong commitment to teaching, having designed and taught various engineering courses, mentored students, and earned a Certificate in Teaching and Learning in Higher Education.

Professional Profile:

SCOPUS

ORCID

GOOGLE SCHOLAR

Summary of Suitability: Dr. Shijing Luo – Best Researcher Award

Dr. Shijing Luo, Assistant Professor at the Department of Materials Science and Engineering, Sichuan University, is a dynamic and forward-thinking researcher whose contributions to energy conversion and storage technologies have earned international recognition. With strong academic foundations and impactful research output, Dr. Luo exemplifies the qualities of a high-potential early-career researcher.

🎓 Education

  • Ph.D. in Mechanical Engineering
    University of Hong Kong (HKU), Hong Kong SAR 🇭🇰
    2020/04 – 2024/03
    👨‍🏫 Supervisor: Prof. Dennis Y.C. Leung
    🏅 Received Postgraduate Scholarship

  • Master’s in Mechanical Engineering
    University of Pittsburgh (Upitt), Pittsburgh, PA, USA 🇺🇸
    2014/08 – 2016/04
    👨‍🏫 Supervisor: Prof. Qing-Ming Wang
    💰 Received Research Assistant Financial Aid

  • Bachelor’s in Materials Science and Engineering
    Harbin Institute of Technology (HIT), Harbin, China 🇨🇳
    2010/08 – 2014/06
    👨‍🏫 Supervisor: Prof. Hongyuan Fang

👨‍🏫 Work Experience

  • Assistant Professor
    Department of Material Science and Engineering, Sichuan University, China 🇨🇳
    📞 Tel: 13410770579
    📧 Email: luosj@connect.hku.hk

  • Teaching Experience
    🧪 Courses Taught:

    • Statics & Mechanics of Materials

    • Structures of Crystals and Diffraction

    • Engineering Mechanics

    • Experimental Design
      📚 Designed lectures, assignments, and exams
      📝 Reviewed and graded coursework
      🎓 Mentored 2 Master’s students and 1 undergraduate

🧪 Research Interests

  • ⚡ Energy Conversion & Storage

    • Fuel cells

    • Metal-air batteries

    • Metal-ion and rechargeable batteries

    • Flow batteries

    • Microfluidics

🏆 Achievements & Honors

  • 📜 Postgraduate Scholarship from HKU

  • 💼 Research Assistant Financial Aid at Upitt

  • 🧑‍🏫 Certificate in Teaching and Learning in Higher Education

Publication Top Notes:

Investigation of electrode scaling-up strategies for paper-based microfluidic fuel cells

Computational modeling studies on microfluidic fuel cell: A prospective review

Paper-based aqueous Al ion battery with water-in-salt electrolyte

Solid-state Al-air battery with an ethanol gel electrolyte

Next-generation magnesium-ion batteries: The quasi-solid-state approach to multivalent metal ion storage

Rechargeable Zn-air batteries: Recent trends and future perspectives

A printed paper-based Zn-air/Ag hybrid battery with switchable working modes

Mr. Cheng Zhong | Power Network | Excellence in Research

Mr. Cheng Zhong | Power Network | Excellence in Research 

Mr. Cheng Zhong, State Grid Corporation of China 

Zhong Cheng, is a Professor-level Senior Engineer and the Director of the State Grid Xiong’an New Area Power Supply Company. He holds a Bachelor’s degree in Information and Communication from Fuzhou University and has extensive expertise in information, communication, sensing, and measurement. He is an active member of multiple technical committees, including the Digital Technology Standards Professional Working Group TC06 of the State Grid Corporation of China and the IEEE PES Power System Communication and Network Security Technical Committee (China). He has received numerous awards, including three second prizes for Scientific and Technological Progress in Hebei Province and multiple national and industry-level honors. Zhong Cheng has led significant research projects, developed national power industry standards, and authored 35 core journal papers, 14 invention patents, one U.S. patent, and four monographs. His contributions to power communication and IoT technologies have made a substantial impact on China’s power grid development.

Professional Profile:

ORCID

Summary of Suitability for Excellence in Research

Zhong Cheng is highly suitable for the Research for Excellence in Research award based on his extensive contributions to information and communication technologies, sensing, and measurement, particularly in the power industry. His expertise is demonstrated through his leadership roles in national and international standardization committees, numerous awards for scientific and technological progress, and impactful research publications.

🎓 Education:

  • Bachelor’s Degree in Information and Communication
  • Alma Mater: Fuzhou University

💼 Work Experience:

  • Director at State Grid Xiong’an New Area Power Supply Company
  • Professor-level Senior Engineer
  • Key Committee Roles:
    • Member of Digital Technology Standards Professional Working Group TC06 (Information and Communication) of State Grid Corporation of China
    • Director of the Strategic Coordination Working Group of the National Power System Management and Information Exchange Standardization Technical Committee
    • Director of the Power IoT Working Group under the Power Information Standardization Committee
    • Member of the IEEE PES Power System Communication and Network Security Technical Committee (China)
    • Member of the China Electrotechnical Society’s Intelligent Sensing Professional Committee

🏆 Achievements & Contributions:

  • Published Works: 📚

    • 35 papers in core domestic journals
    • 14 invention patents
    • 1 U.S. patent
    • 4 monographs, including:
      • “Detailed Solutions to Power Communication Exercises” (Top 100 National Books)
      • “Power Communication Transmission Simulation Training Textbook – Huawei Edition” (Top 100 National Books)
      • “Detailed Solutions to Data Communication Network Professional Exercises” (Top 100 National Books)
      • “Local Communication Network Technology and Applications for Power IoT”
  • Standard Development: 📜

    • Lead developer of the National Energy Industry Standard:
      • “Technical Guidelines for Lightning Protection and Grounding of Overhead Ground Wire Composite Optical Cable” (DLT 1378-2014)

🏅 Awards & Honors:

  • 🏆 Hebei Province Scientific and Technological Progress Awards:
    • 3 Second Prizes
  • ⚡ China Electric Power Scientific and Technological Progress Awards:
    • 2 Third Prizes
  • 🔬 China Electric Power Science and Technology Standards Innovation Awards:
    • 1 Second Prize
  • 🏅 State Grid Corporation Scientific and Technological Progress Award:
    • 1 Second Prize
  • 📜 State Grid Corporation Standard Contribution Award:
    • Second Prize for “Technical Guidelines for Lightning Protection and Grounding of Overhead Ground Wire Composite Optical Cable”

Publication Top Notes:

A Low-Power Communication Strategy for Terminal Sensors in Power Status Monitoring

 

 

 

Sławomir Michałkiewicz | Electrochemistry | Best Researcher Award

Assoc. Prof. Dr. Sławomir Michałkiewicz | Electrochemistry | Best Researcher Award 

Assoc. Prof. Dr. Sławomir Michałkiewicz, Jan Kochanowski University in Kielce, Poland

Dr. Sławomir Michalkiewicz is a highly esteemed chemist and professor at the Institute of Chemistry at Jan Kochanowski University in Kielce, Poland. With a career spanning over three decades, he specializes in the electrochemical properties and voltammetric determination of biochemically active substances. Dr. Michalkiewicz earned his habilitated doctorate in chemical sciences in 2013 and has since contributed significantly to advancing analytical chemistry. His work is renowned for its practical applications in biochemical research.

Professional Profile

Scopus

ORCID

Researcher Suitability Summary for Best Researcher Award

Dr. Michalkiewicz has an extensive academic background with a Ph.D. and habilitation in chemical sciences from prestigious institutions. His progression from a Ph.D. to a habilitated doctorate demonstrates his commitment to advancing his expertise. His work on the electrochemical properties and voltammetric determination of biochemically active substances is highly relevant in chemical sciences and has potential applications in healthcare, environmental science, and industrial processes.

Education 🎓

Dr. Michalkiewicz completed his undergraduate studies in chemistry in 1989 at the Faculty of Mathematics and Natural Sciences of the Higher Pedagogical School in Kielce. He pursued his PhD in chemical sciences at Maria Curie-Skłodowska University in Lublin, graduating in 1998. Later, in 2013, he earned his habilitated doctorate at AGH University of Science and Technology in Kraków. His academic journey reflects his dedication to mastering and contributing to chemical sciences.

Experience 👨‍🏫

Dr. Michalkiewicz serves as a professor at the Institute of Chemistry at Jan Kochanowski University in Kielce, Poland. With extensive teaching and research experience, he mentors future chemists and spearheads studies in electrochemical analysis. His career milestones include impactful academic positions and collaborations with notable research institutions.

Research Interests 🔬

Dr. Michalkiewicz’s research delves into the electrochemical properties and voltammetric determination of biochemically active substances. His work explores advanced techniques in analytical chemistry, with implications for biochemical and medical fields. His research not only pushes the boundaries of voltammetry but also addresses pressing challenges in biochemical analysis.

Awards 🏆

Dr. Michalkiewicz’s contributions to chemical sciences have been recognized with multiple awards. His groundbreaking work in electrochemical research and analytical chemistry has brought him national and international acclaim. His accolades affirm his commitment to advancing scientific understanding.

Publications Top Notes 📚

Ruthenium Complexes with Pyridazine Carboxylic Acid: Synthesis, Characterization, and Anti-Biofilm Activity

TCNQ and Its Derivatives as Electrode Materials in Electrochemical Investigations—Achievement and Prospects: A Review

Application of a Carbon Fiber Microelectrode as a Sensor for Apocynin Electroanalysis

Synthesis, Characterization and Biological Investigations of Half-Sandwich Ruthenium(II) Complexes Containing Benzimidazole Moiety

Electrochemical Characterization and Voltammetric Determination of Methylisothiazolinone on a Boron-Doped Diamond Electrode

Carbon materials in electroanalysis of preservatives: A review