Jiayu Li | Materials Science | Best Researcher Award

Best Researcher Award

Jiayu Li
Shihezi University, China

Jiayu Li
Affiliation Shihezi University
Country China
Scopus ID 60130555200
Documents 4
Citations 7
h-index 2
Subject Area Materials Science
Event Global Sensor Awards

Jiayu Li is a researcher affiliated with Shihezi University, China, whose indexed research profile is associated with the field of Chemical and Gas Sensors. The available bibliographic record identifies four Scopus-indexed documents, seven citations, and an h-index of 2. These indicators provide a quantitative description of the researcher’s current scholarly visibility and publication activity within the indexed scientific literature.[1]

Abstract

This article provides an academic overview of Jiayu Li and the research profile associated with Chemical and Gas Sensors. The available Scopus record indicates four documents and seven citations, with an h-index of 2. The profile is considered in the context of research productivity, scholarly visibility, and potential relevance to recognition within the sensor research community. Bibliometric indicators are presented as descriptive measures and should be interpreted alongside publication quality, research contribution, and broader academic context.[1]

Keywords

Chemical Sensors, Gas Sensors, Gas Detection, Chemical Detection, Sensor Technology, Sensing Materials, Environmental Sensing, Analytical Sensors, Gas Monitoring, Sensor Research, Global Sensor Awards

Introduction

Chemical and gas sensors are important components of modern sensing systems because they enable the detection and measurement of chemical substances and gaseous compounds. Applications include environmental monitoring, industrial process control, safety systems, healthcare, and analytical instrumentation. Research in this area commonly involves sensing materials, transduction mechanisms, signal processing, selectivity, sensitivity, stability, and device integration.[2]

Within this research landscape, scholarly publication and citation records provide useful indicators of research activity. However, bibliometric measures do not independently establish the quality or significance of individual studies and are most appropriately considered together with the underlying scientific contributions.[3]

Research Profile

Jiayu Li is affiliated with Shihezi University in China. The research subject area supplied for this profile is Chemical and Gas Sensors, a multidisciplinary field connecting chemistry, materials science, electronics, instrumentation, and data analysis. The Scopus author identifier associated with the profile is 60130555200.[1]

The available bibliometric record lists four documents, seven citations, and an h-index of 2. These figures represent the supplied profile information and may change as new publications are indexed or additional citations are recorded by bibliographic databases.[1]

Research Contributions

Research in Chemical and Gas Sensors encompasses several complementary areas that support the development of reliable sensing systems. Based on the supplied subject classification, the profile is relevant to the broader scientific domain of chemical detection and gas sensing.

  • Chemical sensing technologies for the detection and analysis of target substances.
  • Gas sensing approaches for identifying and monitoring gaseous compounds.
  • Development and evaluation of sensing materials and sensor structures.
  • Investigation of sensor characteristics such as sensitivity, selectivity, response, and stability.
  • Application of sensing technologies to analytical, environmental, industrial, and safety-related monitoring.

Publications

The available Scopus profile records four documents associated with Jiayu Li. These publications form the documented basis for assessing the researcher’s indexed scholarly activity in the supplied profile. Individual publication titles, journal information, publication dates, and DOI identifiers should be verified against the corresponding publisher and indexing records before being used for detailed bibliographic analysis.[1]

Where applicable, Digital Object Identifiers provide persistent links to individual scholarly publications and can be used to identify the authoritative publisher record. A DOI should be associated only with the specific publication for which the identifier has been verified.[3]

Research Impact

The supplied profile reports seven citations and an h-index of 2. Citation counts provide an indication of how frequently a researcher’s indexed publications have been cited by other scholarly works, while the h-index combines publication and citation information into a single bibliometric measure.[1]

Research impact in Chemical and Gas Sensors may also be assessed through factors that are not captured by citation metrics alone, including methodological contribution, sensor performance, reproducibility, practical application, collaboration, and relevance to emerging sensing challenges. Consequently, the available metrics should be interpreted as part of a broader academic assessment rather than as a standalone measure of research quality.[3]

Award Suitability

The Best Researcher Award profile is associated with research activity in Chemical and Gas Sensors. The documented publication record, citation activity, and specialization provide measurable information that can be considered as part of an academic recognition profile. The award assessment should additionally take into account the originality, scientific rigor, relevance, and documented contribution of the researcher’s individual publications and projects.

  • Documented scholarly activity through four indexed publications.
  • Seven recorded citations indicating measurable scholarly use of the indexed research.
  • An h-index of 2 within the supplied Scopus profile information.
  • Research specialization aligned with Chemical and Gas Sensors.
  • Institutional affiliation with Shihezi University, China.

Conclusion

Jiayu Li’s supplied academic profile reflects research activity in Chemical and Gas Sensors and includes four Scopus-indexed documents, seven citations, and an h-index of 2. The profile provides a concise basis for documenting scholarly activity associated with sensor research. For formal academic evaluation, these bibliometric indicators should be complemented by verified publication records, research contributions, methodological significance, and other evidence of scholarly achievement.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Jiayu Li, Author ID 60130555200. Scopus.
    https://www.scopus.com/pages/authors/60130555200
  2. National Research Council. (2006). Sensor Systems for Biological and Environmental Monitoring. National Academies Press.
    https://doi.org/10.17226/11581
  3. Hirsch, J. E. (2005). An index to quantify an individual’s scientific research output. Proceedings of the National Academy of Sciences, 102(46), 16569–16572.
    https://doi.org/10.1073/pnas.0507655102

Dr. Abida | Materials Science | Women Researcher Award

Dr. Abida | Materials Science | Women Researcher Award

Dr. Abida | Materials Science | Swami Vivekanand Subharti University | India

Dr. Abida is a distinguished materials chemist and academic professional whose research integrates heterogeneous catalysis, nanomaterials, environmental chemistry, and sustainable energy systems with strong relevance to sensor-enabled chemical technologies and advanced functional materials. She earned her Doctor of Philosophy in Chemistry from Thapar Institute of Engineering and Technology, supported by rigorous postgraduate and undergraduate training in chemical sciences from C.C.S. University, which together provide her with a strong theoretical and experimental foundation in applied chemistry and materials engineering. Her scholarly output is validated by a strong Scopus profile showing sixteen indexed publications, one hundred forty citations across one hundred twenty-four citing documents, and an h-index of eight.

Citation Metrics (Google Scholar)

200

150

100

50

0

Citations
156

Documents
23+

h-index
8

Citations
Documents
h-index

View Google Scholar Profile
View Scopus Profile

Featured Publications

Dr. Laura Higueras Contreras | Materials Science | Research Excellence Award

Dr. Laura Higueras Contreras | Materials Science | Research Excellence Award 

Dr. Laura Higueras Contreras | Materials Science | CSIC – Institute of Agrochemistry and Food Technology (IATA) | Spain

Dr. Laura Higueras Contreras is a female researcher and academic specializing in food science, active and intelligent food packaging, and material-based sensing technologies with applications in food safety and quality assurance. She holds a Ph.D. in Food Science from the University of Valencia and has received comprehensive interdisciplinary training in food technology, pharmaceutical sciences, and advanced material characterization, enabling her to bridge chemical, biological, and sensing-driven approaches in applied research. Her professional experience includes long-term research and academic appointments at the University of Valencia and the CSIC–Institute of Agrochemistry and Food Technology (IATA), where she has contributed extensively to experimental development, data analysis, and reporting within collaborative research environments. Dr. Laura Higueras Contreras has participated in multiple internationally funded research projects involving large multi-institutional consortia, focusing on antimicrobial packaging systems, nanocellulose-based functional materials, controlled-release polymers, and sustainable food-contact materials with sensing capabilities. Her research interests center on smart and active packaging, polymeric and hybrid materials, natural antimicrobials, food safety monitoring, and sustainable sensing solutions for shelf-life extension. Her research skills include material synthesis and characterization, experimental design, analytical data interpretation, polymer processing, antimicrobial evaluation, and scientific reporting aligned with Scopus- and IEEE-indexed standards. She has authored 13 peer-reviewed publications indexed in Scopus, accumulating over 530 citations with an h-index of 8, reflecting strong research impact and international visibility through verified Scopus, ORCID, and Google Scholar profiles.

Citation Metrics (Scopus)

600

400

200

100

0

Citations
567

Documents
13

h-index
8

Citations
Documents
h-index


View Scopus Profile

Top Publication