Abdul Barik | Sensor Characterization | Best Academic Researcher Award

Best Academic Researcher Award

Abdul Barik
Department of Textile Engineering, Southeast University, Bangladesh

Abdul Barik
Affiliation Southeast University
Country Bangladesh
Scopus ID 57222270795
Documents 8
Citations 109
h-index 4
Subject Area Sensor Characterization
Event Global Sensor Awards
ORCID 0009-0002-4657-2162

Abdul Barik is a Lecturer in the Department of Textile Engineering at Southeast University, Bangladesh. His academic career combines teaching, materials research, and scientific collaboration in condensed matter physics and engineering materials. His research emphasizes thin films, nanotechnology, functional oxide materials, perovskite materials, computational materials science, and optoelectronic applications. Through interdisciplinary research, undergraduate instruction, and collaborative projects, he contributes to the advancement of sustainable materials and sensor characterization technologies while promoting innovation in higher education and engineering research.[1]

Abstract

Abdul Barik is an academic researcher whose work integrates experimental and computational investigations of functional materials for sensor, energy, and optoelectronic applications. His research explores thin films, lead-free perovskites, nanostructured materials, and density functional theory (DFT) simulations to understand structural, electrical, and optical properties. His scholarly activities include peer-reviewed publications, editorial appointments, conference participation, and collaborative research, supporting the advancement of sustainable materials science and engineering.[2]

Keywords

Sensor Characterization; Thin Films; Nanotechnology; Functional Oxide Materials; Lead-Free Perovskites; Condensed Matter Physics; Computational Materials Science; Density Functional Theory; Optoelectronic Materials; X-ray Diffraction.

Introduction

Serving as a Lecturer at Southeast University, Abdul Barik combines engineering education with active scientific research. His professional interests span materials characterization, thin-film technology, functional oxide materials, nanotechnology, and computational modelling. Through teaching, curriculum development, and student supervision, he supports the development of future engineers while maintaining an active research profile focused on advanced materials and their technological applications.[2]

Research Profile

His ongoing research investigates calcium-substituted barium titanate thin films for optoelectronic devices, pressure-dependent electronic behaviour of lead-free perovskites using density functional theory, and functional oxide materials for energy applications. His expertise includes X-ray diffraction analysis, electrical and optical characterization, computational materials science, and experimental materials engineering. Collaborative research with Bangladesh University of Engineering and Technology, Southeast University, and international materials researchers has strengthened the interdisciplinary scope of his investigations.[2]

Research Contributions

  • Experimental characterization of functional oxide thin films.
  • Computational investigation of lead-free perovskite materials using density functional theory.
  • Research on structure–property relationships in advanced materials.
  • Studies of optical, structural, and electrical properties of nanostructured materials.
  • Promotion of interdisciplinary collaboration in condensed matter physics and materials science.
  • Academic mentoring, undergraduate teaching, and curriculum development.

Publications

The researcher has authored eight Scopus-indexed publications and a total of nine scholarly journal publications. His work has received over one hundred citations across academic databases and more than 4,420 ResearchGate reads. His publication portfolio focuses on condensed matter physics, sensor characterization, thin films, perovskite materials, and functional oxides, reflecting sustained engagement in advanced materials research.[1]

  • Scopus-indexed journal publications: 8
  • Total journal publications: 9
  • Editorial appointments: 2
  • ResearchGate citations: 135
  • ResearchGate reads: 4,420+

Research Impact

The available research indicators include eight Scopus-indexed documents, 109 Scopus citations, an h-index of 4, and broader academic visibility reflected by 135 Google Scholar and ResearchGate citations. His editorial responsibilities, collaborative research, and conference participation further demonstrate sustained scholarly engagement in materials science, computational modelling, and sensor-related characterization techniques.[1]

Award Suitability

Abdul Barik’s profile aligns with the objectives of the Best Academic Researcher Award presented at the Global Sensor Awards. His contributions to thin-film characterization, functional oxide materials, computational materials science, and optoelectronic research demonstrate scientific relevance within the field of sensor characterization. His academic leadership, collaborative research activities, and publication record support recognition for sustained contributions to engineering education and materials research.[2]

Conclusion

Abdul Barik has established a growing academic profile through interdisciplinary research, engineering education, and collaborative scientific investigations. His work in condensed matter physics, thin films, nanotechnology, and functional materials contributes to ongoing developments in advanced materials and sensor characterization. Continued research, publication, and academic engagement position him as an active contributor to emerging technologies and sustainable engineering applications.

References

  1. Elsevier. (n.d.). Scopus author details: Abdul Barik, Author ID 57222270795. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57222270795
  2. Abdul Barik. Academic and Professional Background, Research Projects, Research Contributions, Collaborations, Publication Metrics, and Professional Activities.

Akram Pezeshki | Sensor Characterization | Best Researcher Award

Best Researcher Award

Akram Pezeshki
Affiliation University of Tabriz
Country Iran
Scopus ID 56498839800
Documents 39
Citations 1,762
h-index 22
Subject Area Sensor Characterization
Event Global Sensor Awards

Akram Pezeshki
University of Tabriz, Iran.

Akram Pezeshki is an academic researcher affiliated with the University of Tabriz, Iran, whose scholarly activities have contributed to the advancement of sensor characterization and related analytical methodologies. His publication portfolio, citation performance, and documented research outputs demonstrate sustained engagement with scientific inquiry in sensor technologies and measurement sciences. The academic profile summarized in this article is presented in the context of evaluation for the Best Researcher Award associated with the Global Sensor Awards.[1][2]

Abstract

This article presents a scholarly overview of Akram Pezeshki and his documented research activities within the field of sensor characterization. The profile highlights publication productivity, citation metrics, research influence, and contributions to sensor-related scientific knowledge. Available bibliometric indicators suggest a sustained record of academic engagement and measurable scholarly impact within the broader sensor research community.[1][3]

Keywords

Sensor Characterization, Measurement Science, Sensor Technology, Scientific Impact, Research Evaluation, Academic Recognition, Citation Analysis, Sensor Applications, Materials Characterization, Best Researcher Award.

Introduction

The advancement of sensor technologies depends on continuous improvements in characterization methods, performance evaluation, reliability assessment, and application-specific optimization. Researchers working in this area contribute to the development of sensing systems that support scientific, industrial, environmental, and technological applications. Akram Pezeshki has participated in research efforts related to these objectives through publications indexed in international scholarly databases and cited by subsequent scientific works.[1][4]

Research Profile

Akram Pezeshki is affiliated with the University of Tabriz and maintains a documented publication record indexed within Scopus. Available bibliometric information indicates 39 indexed documents, 1,762 citations received from 1,562 citing documents, and an h-index of 22. These indicators collectively reflect both publication activity and scholarly visibility within the research community.[1]

Research activities associated with this profile are primarily connected to sensor characterization and related scientific disciplines. Citation-based indicators suggest that the research outputs have been referenced by a broad range of subsequent studies, indicating ongoing relevance to researchers working in connected domains.[1][2]

Research Contributions

The research contributions associated with Akram Pezeshki encompass the investigation, characterization, and analytical evaluation of sensor-related systems and materials. Such work supports improved understanding of sensing mechanisms, operational performance, calibration approaches, and practical deployment considerations.[4]

Through peer-reviewed publications, the researcher has contributed to scientific discussions involving measurement reliability, sensitivity assessment, signal interpretation, and performance optimization. These contributions help strengthen the evidence base required for the development of advanced sensing technologies and their practical applications.[5]

Publications

The publication portfolio associated with the researcher includes articles indexed within internationally recognized scholarly databases. The body of work demonstrates engagement with topics relevant to sensor characterization, analytical methodologies, and scientific measurement. Publication activity across peer-reviewed venues contributes to knowledge dissemination and supports collaboration within the global research community.[1]

Research Impact

Research impact may be evaluated through publication output, citation frequency, scholarly visibility, and influence on subsequent studies. The available citation record of 1,762 citations and an h-index of 22 indicate measurable recognition of the researcher’s contributions within the scientific literature.[1]

Citation-based evidence suggests that the published works have informed ongoing research efforts and contributed to the broader development of sensor science. The sustained use of these publications by other researchers reflects their continuing relevance to academic and applied investigations.[3]

Award Suitability

The Best Researcher Award recognizes individuals whose scholarly records demonstrate meaningful contributions to their respective disciplines. Based on the documented publication history, citation performance, and involvement in sensor characterization research, Akram Pezeshki exhibits several characteristics commonly considered during academic recognition assessments.[1]

Consideration for recognition may be supported by evidence of sustained research activity, peer-reviewed dissemination of findings, and measurable influence within the scientific literature. Such indicators align with widely accepted evaluation frameworks used by academic institutions and scientific organizations when assessing research excellence.

Conclusion

Akram Pezeshki’s academic profile reflects sustained engagement in sensor characterization research through peer-reviewed publications, documented citation impact, and participation in the advancement of scientific knowledge. Available bibliometric evidence indicates a research record that contributes to scholarly discourse and supports consideration within academic recognition programs such as the Global Sensor Awards.[1][2]

References

    1. Elsevier. (n.d.). Scopus Author Details: Akram Pezeshki, Author ID 56498839800. Scopus.
      https://www.scopus.com/authid/detail.uri?authorId=56498839800
    2. Google Scholar. (n.d.). Scholar Profile of Akram Pezeshki.
      https://scholar.google.com/citations?user=R1iy0pQAAAAJ&hl=en&oi=ao
    3. Hirsch, J. E. (2005). An index to quantify an individual’s scientific research output.
    4. Janata, J. (2009). Principles of Chemical Sensors. Springer.
    5. Gardner, J. W., & Varadan, V. K. (2001). Microsensors, MEMS and Smart Devices.