Yiwei Jiang | Materials Science | Best Researcher Award

Best Researcher Award

Yiwei Jiang
McGill University, Canada

Yiwei Jiang
Affiliation McGill University
Country Canada
Scopus ID 57200548344
Documents 2
Citations 33
h-index 2
Subject Area Materials Science
Event The Scientist Global Awards
Google Scholar 4C7gG2gAAAAJ#

Yiwei Jiang is a researcher affiliated with McGill University in Canada whose listed research subject area is Materials Science. The researcher is associated with a Scopus author profile reporting 2 documents, 33 citations, and an h-index of 2 at the time of the information supplied for this article. These bibliometric indicators provide a quantitative snapshot of indexed research activity and citation visibility; they should be interpreted in conjunction with publication quality, research contribution, and disciplinary context. The h-index is a commonly used bibliometric indicator that combines publication and citation dimensions into a single measure. [1]

This academic recognition profile presents the available researcher information in the context of the Best Researcher Award associated with The Scientist Global Awards. The information is organized to distinguish verifiable profile data from broader academic assessment considerations.

Abstract

This article provides an academic recognition profile of Yiwei Jiang of McGill University, Canada, in relation to the Best Researcher Award associated with The Scientist Global Awards. The supplied researcher record identifies Materials Science as the principal subject area and reports 2 documents, 33 citations, and an h-index of 2 in Scopus. Academic assessment is strengthened by consideration of the originality, relevance, methodological quality, dissemination, and broader significance of research outputs. [1]

Keywords

Yiwei Jiang; McGill University; Materials Science; academic research; bibliometrics; Scopus; citations; h-index; research impact; Best Researcher Award; The Scientist Global Awards.

Introduction

Researcher recognition in contemporary academia commonly incorporates both qualitative and quantitative evidence. Bibliometric databases such as Scopus can provide structured information concerning publications and citations, while indicators such as the h-index are frequently used to summarize aspects of research visibility. The interpretation of such indicators requires attention to disciplinary differences, career stage, database coverage, and the characteristics of individual research fields. [1]

Research Profile

The supplied academic profile places Yiwei Jiang within the field of Materials Science and associates the researcher with McGill University in Canada. The Scopus author identifier is 57200548344. According to the supplied figures, the indexed profile contains 2 documents, which have received 33 citations, producing an h-index of 2.[2]

Research Contributions

From an academic evaluation perspective, the reported citation activity indicates that the researcher’s indexed publications have received attention within the scholarly literature. Citation counts, however, are contextual indicators rather than direct measures of scientific quality. A balanced assessment should also consider the originality of the work, authorship contribution, methodological rigor, reproducibility, relevance to the field, and influence on subsequent research. [1]

Publications

The supplied Scopus profile reports 2 documents associated with Yiwei Jiang. Because publication titles, journal names, publication dates, author lists, and DOI identifiers were not included in the source data provided for this article, individual publications are not named here. This approach avoids attributing publications or DOI records to the researcher without sufficient verification.[1]

Research Impact

The supplied Scopus indicators report 33 citations across 2 indexed documents, with an h-index of 2. These figures indicate measurable citation visibility within the indexed literature. The h-index was introduced as a metric intended to combine productivity and citation impact, although its interpretation is affected by field, publication patterns, database coverage, and researcher career duration. [1]

Award Suitability

The supplied nomination context identifies Yiwei Jiang for consideration under the Best Researcher Award associated with The Scientist Global Awards. Based on the information available for this article, relevant evaluation evidence includes the researcher’s Materials Science affiliation, institutional association with McGill University, indexed Scopus activity, citation count, and h-index.[3]

Conclusion

Yiwei Jiang is identified in the supplied information as a Materials Science researcher affiliated with McGill University in Canada. The reported Scopus profile contains 2 documents, 33 citations, and an h-index of 2. These indicators provide a concise quantitative description of indexed scholarly activity and may serve as supporting evidence in an academic recognition process. As with all bibliometric assessments, the figures should be interpreted in their disciplinary and career context and supplemented by qualitative evidence concerning research quality and contribution. [1]

References

  1. Polyhedron. (2018). 3D flower-like Ni–Co–S with high specific surface area for the electrocatalytic oxidation of methanol.
    https://doi.org/10.1016/j.poly.2018.01.006
  2. Scopus Author Profile for Yiwei Jiang, Author ID 57200548344. The profile is the supplied source for the reported documents, citations, and h-index information.
    Scopus Author Profile
  3. The Scientist Global Awards. Official award website supplied for the award context described in this article.
    Official Award Website

Zhihai Ke | Polymers and Materials | Innovative Research Award

Innovative Research Award

Zhihai Ke
The Chinese University of Hong Kong (Shenzhen)

Zhihai Ke
Affiliation The Chinese University of Hong Kong (Shenzhen)
Country China
Scopus ID 55658596800
Documents 52
Citations 1623
h-index 21
Subject Area Polymers and Materials
Event The Scientist Global Awards
ORCID 0000-0001-7079-8845

The Innovative Research Award recognizes scholarly excellence and sustained research contributions that advance scientific knowledge through rigorous investigation, interdisciplinary collaboration, and measurable academic impact. This article summarizes the academic profile of Zhihai Ke, a researcher affiliated with The Chinese University of Hong Kong (Shenzhen), highlighting research activities, publication record, scientific influence, and relevance to international research recognition within the field of polymers and materials science.[1]

Abstract

Zhihai Ke has established a research profile focused on polymers and advanced materials, contributing to the development of functional materials with applications in engineering, sustainability, and emerging technologies. Through peer-reviewed publications and collaborative research, the researcher has demonstrated consistent academic productivity reflected by Scopus-indexed publications, citation performance, and an h-index indicative of sustained scholarly influence.[1][2]

Keywords

Polymers, Materials Science, Functional Materials, Polymer Engineering, Advanced Materials, Scientific Research, Academic Publications, Research Impact, Citation Analysis, Innovation.

Introduction

Modern materials research supports advances in manufacturing, electronics, biomedical engineering, environmental sustainability, and energy technologies. Researchers working in polymer science contribute to the design of high-performance materials capable of addressing industrial and societal challenges. Zhihai Ke’s scholarly activities are situated within this evolving scientific landscape, emphasizing rigorous experimentation, interdisciplinary collaboration, and dissemination through internationally indexed scientific publications.[2]

Research Profile

Affiliated with The Chinese University of Hong Kong (Shenzhen), Zhihai Ke has developed an academic profile centered on polymers and materials science. According to the provided scholarly metrics, the researcher has authored 52 Scopus-indexed documents, received 1,623 citations, and achieved an h-index of 21, indicating sustained visibility within the international scientific community.[1]

Research Contributions

Research contributions have focused on the investigation and development of advanced polymeric materials and related technologies. Published studies contribute to understanding material performance, structural optimization, and practical engineering applications while supporting continued scientific advancement through peer-reviewed dissemination. These contributions reflect a commitment to evidence-based research methodologies and international academic collaboration.[2][3]

Publications

The publication portfolio consists of internationally indexed scholarly articles covering polymer science and materials engineering. Publication activity demonstrates continued engagement with contemporary scientific questions while contributing to cumulative knowledge within the discipline. Citation metrics indicate that these publications have been referenced by subsequent research, reflecting their relevance within the academic literature.[1]

Research Impact

Research impact is commonly evaluated using publication productivity, citation frequency, and bibliometric indicators. The available metrics demonstrate meaningful scholarly engagement through 52 indexed publications, 1,623 citations, and an h-index of 21. Collectively, these indicators suggest consistent academic influence within the field of polymers and materials science while supporting continued recognition within the international research community.[1]

Award Suitability

Based on the available academic information, Zhihai Ke demonstrates characteristics commonly considered in scholarly recognition programs, including sustained publication activity, measurable citation impact, active participation in internationally visible research, and contributions to the advancement of polymers and materials science. These achievements align with the objectives of research recognition initiatives such as The Scientist Global Awards, which acknowledge excellence in scientific investigation and knowledge dissemination.[4]

Conclusion

Zhihai Ke’s academic record reflects sustained contributions to polymers and materials science through peer-reviewed publications, measurable citation performance, and continued engagement with internationally recognized research. The available bibliometric indicators and scholarly activities demonstrate an established research profile that supports consideration within academic recognition programs while contributing to the broader advancement of scientific knowledge.[1]

References

  1. Elsevier. (2026). Scopus author details: Zhihai Ke, Author ID 55658596800. Scopus.
    https://www.scopus.com/pages/authors/55658596800
  2. Electrostatically Assembled MnO2 Nanoflower-Pillared Ti3C2Tx MXene Heterostructures for Flexible, High-Sensitivity Electrochemical Sensors
    https://doi.org/10.1016/j.mtnano.2026.100831
  3. Journal of Materials Chemistry A (2025). Phase-engineered zirconium MOF-based titanium single-atom catalysts: phase-dependent properties and applications in biodiesel synthesis.
    https://doi.org/10.1039/d4ta07503j
  4. The Scientist Global Awards (2026). International scientific recognition and award program.
    https://thescientists.net/

Yusuf Mathiinul Hakim | Materials Science | Research Excellence Award

Dr. Yusuf Mathiinul Hakim | Materials Science | Research Excellence Award

Postdoctoral fellow | National Research and Innovation Agency of Indonesia | Indonesia

Dr. Yusuf Mathiinul Hakim is an emerging researcher in the field of chemistry, specializing in functionalized natural clay minerals and composite materials for environmental remediation. His work primarily focuses on the synthesis and modification of bentonite-based materials, catalysts, and photocatalysts aimed at efficient wastewater treatment through adsorption and photodegradation processes. With a strong foundation in materials chemistry and environmental applications, his research contributes to the development of sustainable, low-cost, and eco-friendly technologies. He has authored 9 scientific documents with a total of 32 citations, reflecting growing academic recognition, and holds an h-index of 4, indicating consistent research impact. His publications span areas such as dye removal, pollutant degradation, and advanced material design, demonstrating interdisciplinary relevance. Through innovative experimental approaches and applied research, he continues to advance scientific understanding in environmental chemistry and materials science.

Citation Metrics (Scopus)

40

30

20

10

0

 

32
Citations

9
Documents

4
h-index

Citations

Documents

h-index

Featured Publications

Jae-Ho Lee | Materials Science | Research Excellence Award

Dr. Jae-Ho Lee | Materials Science | Research Excellence Award

Professor | Kunsan National University | South Korea

Dr. Jae-Ho Lee is an Assistant Professor in the Department of Electronic Engineering at Kunsan National University, with recognized expertise in antennas, antenna arrays, millimeter-wave systems, wireless power transfer (WPT), automotive radar, and implantable devices. He has authored more than 30 peer-reviewed publications, accumulating over 620 citations, with an h-index of 13 and an i10-index of 15. His highly cited works in IEEE Transactions and ETRI Journal have contributed foundational methods in WPT efficiency optimization, millimeter-wave array design, and biomedical telemetry antennas. Dr. Lee actively collaborates with interdisciplinary teams in electromagnetics, radar signal processing, and biomedical engineering. His research supports societal impact through advancements in automotive safety, wireless energy systems, and implantable healthcare technologies.

Citation Metrics (Google Scholar)

620
450
300
150
0

Citations

620

h-index

13

i10-index

15

Citations

h-index

i10-index

View Google Scholar Profile
View Scopus Profile View ORCID Profile

Featured Publications


Optimal coupling to achieve maximum output power in a WPT system

– IEEE Transactions on Power Electronics, 2016. | Citations: 115.


Capacitively coupled microstrip comb-line array antennas for millimeter-wave applications

– IEEE Antennas and Wireless Propagation Letters, 2020. | Citations: 57.


Frequency-tuning method using the reflection coefficient in a wireless power transfer system

– IEEE Microwave and Wireless Components Letters, 2017. | Citations: 44.