Yengkhom Disco Singh | Nano Sensors | Distinguished Scientist Award

Distinguished Scientist Award

Yengkhom Disco Singh
Central Agricultural University, College of Horticulture and Forestry, Pasighat, India

Yengkhom Disco Singh
Affiliation Central Agricultural University, College of Horticulture and Forestry, Pasighat
Country India
Scopus ID 57214304156
Documents 64
Citations 1,416
h-index 20
Subject Area Nano Sensors
Event Global Sensor Awards
ORCID 0000-0002-7580-2345

The Distinguished Scientist Award recognizes researchers whose scholarly activities demonstrate sustained scientific contributions, research integrity, and professional engagement within their respective disciplines. Yengkhom Disco Singh, affiliated with the Central Agricultural University, College of Horticulture and Forestry, Pasighat, has developed an academic profile associated with Nano Sensors and related scientific investigations. His publication record and research visibility, as represented through internationally recognized scholarly databases, contribute to the assessment of his academic standing and suitability for professional recognition.[1]

Abstract

This article presents an overview of the academic profile of Yengkhom Disco Singh in the context of the Distinguished Scientist Award. The profile summarizes institutional affiliation, subject specialization, scholarly publications, research influence, and professional contributions associated with Nano Sensors. The information is compiled using publicly available scholarly records and internationally recognized researcher identifiers, providing a neutral overview suitable for academic recognition.[1]

Keywords

Nano Sensors, Sensor Technology, Agricultural Research, Scientific Innovation, Scopus Author, ORCID, Distinguished Scientist Award, Global Sensor Awards, Research Excellence, Academic Recognition.

Introduction

Research involving Nano Sensors continues to support advancements in precision agriculture, environmental monitoring, healthcare diagnostics, and intelligent sensing systems. Scientists working in these interdisciplinary domains contribute to the development of innovative sensing materials, improved analytical methodologies, and practical technological applications. Academic recognition programs acknowledge sustained research productivity, scholarly communication, and contributions to scientific progress.[2]

Research Profile

Yengkhom Disco Singh is affiliated with the Central Agricultural University, College of Horticulture and Forestry, Pasighat, India. His scholarly profile is indexed in Scopus under Author ID 57214304156 and is further supported through an ORCID identifier, facilitating transparent attribution of academic publications and research activities. Such researcher identifiers improve discoverability, citation tracking, and scholarly interoperability across international databases.[1]

Research Contributions

Research activities associated with Nano Sensors commonly encompass sensor materials, nanoscale characterization, analytical instrumentation, agricultural sensing, environmental monitoring, and interdisciplinary engineering applications. Through scholarly publications and collaborative research, investigators contribute to expanding scientific understanding and promoting practical innovations across multiple sectors.[2]

  • Nano sensor research and interdisciplinary applications.
  • Scientific publications indexed in recognized databases.
  • Academic collaboration and knowledge dissemination.
  • Contribution to agricultural and environmental sensing research.

Publications

The researcher’s scholarly publications are catalogued through Scopus and associated digital identifiers. These publications contribute to citation-based evaluation and provide evidence of sustained academic productivity. Individual articles may also include Digital Object Identifier (DOI) records that enable permanent access and reliable citation.[1][3]

Research Impact

Academic impact is commonly evaluated using publication quality, citation performance, collaboration networks, and sustained research engagement. International researcher identifiers such as ORCID and Scopus Author ID provide standardized mechanisms for documenting scholarly output and enhancing research visibility across the global scientific community.[1]

Award Suitability

Based on publicly available academic records, Yengkhom Disco Singh demonstrates characteristics that align with the objectives of the Distinguished Scientist Award. These include institutional research engagement, scholarly publication activity, internationally recognized researcher identification, and subject expertise within Nano Sensors. Final award evaluations remain subject to the established review procedures, eligibility criteria, and independent assessment conducted by the organizing committee of the Global Sensor Awards.[4]

Conclusion

The academic profile presented here provides a structured overview of the research background of Yengkhom Disco Singh. Through recognized scholarly identifiers, institutional affiliation, and continued engagement in Nano Sensor research, the profile illustrates professional achievements suitable for consideration within academic recognition initiatives. Continued publication, collaboration, and scientific innovation are expected to further strengthen long-term scholarly impact.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Yengkhom Disco Singh, Author ID 57214304156. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57214304156
  2. ORCID. (n.d.). ORCID researcher profile.
    https://orcid.org/0000-0002-7580-2345
  3. Nature Nanotechnology. (2019). Nanotechnology research example.
    https://doi.org/10.1038/s41565-019-0506-1
  4. Global Sensor Awards. (n.d.). Official Award Website.
    https://globalsensorawards.com/

Abdulrazzaq Hammal | Nano Sensors | Best Researcher Award

Best Researcher Award

Abdulrazzaq Hammal
Affiliation University of Aleppo
Country Syria
Scopus ID 45661237600
Documents 13
Citations 30 Citations by 30 Documents
h-index 3
Subject Area Nano Sensors
Event Global Sensor Awards
ORCID 0000-0003-1828-1376

Abdulrazzaq Hammal
University of Aleppo, Syria

Abdulrazzaq Hammal
is a researcher affiliated with the University of Aleppo, Syria, whose scholarly activities are associated with the field of Nano Sensors. His research profile reflects contributions to sensor technologies, nanomaterial applications, and related scientific investigations documented through indexed publications and citations. The recognition of his academic achievements aligns with the objectives of the Global Sensor Awards, which highlight scientific excellence and innovation within sensor-related disciplines.[1]

Abstract

This article presents an academic recognition profile of Abdulrazzaq Hammal, emphasizing his scholarly activities in nano sensor research, publication record, citation performance, and broader scientific engagement. The profile summarizes key indicators commonly considered in evaluating research excellence, including publication output, citation metrics, and participation in specialized scientific domains.[1][2]

Keywords

Nano Sensors; Sensor Technology; Nanomaterials; Scientific Research; Research Excellence; Academic Recognition; Citation Analysis; Scopus Author Profile; University of Aleppo; Global Sensor Awards.

Introduction

Research in nano sensor technologies represents an interdisciplinary field that combines materials science, nanotechnology, electronics, and analytical methodologies. Scholars working within this area contribute to advances in detection systems, monitoring technologies, and precision measurement applications. Abdulrazzaq Hammal’s documented research activities are situated within this evolving scientific landscape, reflecting engagement with contemporary sensor-related investigations and publication-based dissemination of findings.[3][4]

Research Profile

According to available scholarly indexing information, Abdulrazzaq Hammal maintains a Scopus author profile associated with Author ID 45661237600. The profile records 13 indexed documents, an h-index of 3, and citation activity demonstrating engagement with the scientific community through referenced research outputs. Such indicators are commonly employed in academic evaluation frameworks to assess visibility and influence within a specialized field.[1]

His affiliation with the University of Aleppo provides an institutional foundation for research development, collaboration, and dissemination. Through scholarly publication and participation in scientific discourse, the researcher contributes to the continued advancement of nano sensor applications and related technological innovations.[5]

Research Contributions

The research contributions associated with Abdulrazzaq Hammal encompass investigations connected to nano-scale sensing technologies and scientific methodologies relevant to sensor performance, material characterization, and analytical applications. Such contributions support the broader objectives of enhancing detection sensitivity, improving measurement reliability, and expanding the practical deployment of advanced sensing systems.[3]

The interdisciplinary nature of nano sensor research encourages integration across multiple scientific disciplines. Publications produced within this area often contribute to knowledge transfer between materials science, engineering, chemistry, and applied technology sectors, thereby strengthening the impact of sensor innovation on real-world applications.[4]

Publications

The author’s publication portfolio includes peer-reviewed research outputs indexed through recognized academic databases. Publication activity serves as a measurable indicator of scholarly productivity and facilitates dissemination of research findings to the global scientific community. Indexed publications also support citation accumulation and broader academic visibility.[1][2]

  • Indexed scientific articles in nano sensor-related domains.
  • Research outputs contributing to interdisciplinary scientific knowledge.
  • Publications accessible through international indexing services.
  • Scholarly works supporting future research and technological development.

Research Impact

Research impact may be evaluated through a combination of citation metrics, publication visibility, and scientific influence. The citation record associated with Abdulrazzaq Hammal indicates that his research outputs have been referenced within subsequent scholarly works. Citation activity provides evidence of knowledge dissemination and academic engagement beyond the original publications.[1]

In fields such as nano sensors, research impact extends beyond citation counts to include technological relevance, methodological advancement, and potential contributions to industrial, environmental, healthcare, and monitoring applications. These dimensions collectively strengthen the significance of sustained scholarly activity.[4]

Award Suitability

The Best Researcher Award category recognizes individuals demonstrating measurable scholarly achievements, active participation in scientific research, and meaningful contributions to their respective disciplines. Abdulrazzaq Hammal’s documented publication record, citation metrics, institutional affiliation, and involvement in nano sensor research provide objective indicators that align with common academic evaluation criteria utilized by international recognition programs.

Assessment for such recognition generally considers research productivity, scientific relevance, citation performance, and contributions to advancing knowledge. The available academic indicators suggest a profile characterized by sustained engagement in scholarly research and dissemination activities within a specialized scientific field.

Conclusion

Abdulrazzaq Hammal represents an active contributor within the nano sensor research community through publication activity, citation engagement, and institutional research involvement. His academic profile reflects participation in a scientific field that continues to generate technological innovation and interdisciplinary collaboration. The documented indicators associated with his scholarly work provide a basis for recognition within academic award programs dedicated to research excellence.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Abdulrazzaq Hammal, Author ID 45661237600. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=45661237600
  2. ORCID. (n.d.). Researcher Profile: Abdulrazzaq Hammal.
    https://orcid.org/0000-0003-1828-1376
  3. Wang, J. (2020). Advances in Nano Sensor Technologies and Applications.
  4. Nature Nanotechnology. (2020). Emerging Trends in Nanotechnology-Based Sensors.
    DOI: https://doi.org/10.1038/s41565-020-0670-3
  5. University of Aleppo. (n.d.). Institutional Research and Academic Activities.
    https://www.alepuniv.edu.sy

Ghassem Baridi | Nano Sensors | Research Excellence Award

Dr. Ghassem Baridi | Nano Sensors | Research Excellence Award

UNIMORE | Italy

Dr. Ghassem Baridi is a Biomedical Engineer specializing in nanotechnology and advanced biosensing systems, currently pursuing his PhD at the University of Modena and Reggio Emilia (UNIMORE), Italy. His research focuses on graphene-based biosensors, particularly GFET and SPR technologies, for physiological tissue analysis and biomarker detection. He has demonstrated strong expertise in integrating experimental techniques with computational modeling using COMSOL to optimize sensor performance and sensitivity. Baridi has authored and co-authored multiple peer-reviewed publications in reputable journals such as Physica E, Superlattices and Microstructures, Micromachines, and Sensors, with several additional works under review. His international collaborations, including research engagement in Spain, highlight his global academic involvement. With over a decade of experience as a physics educator, he has also contributed significantly to science education, fostering analytical skills and scientific awareness in society.

Citation Metrics (Scopus)
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Featured Publications

Graphene plasmonic-assisted enhancement of linear and nonlinear optical properties of conic-shaped InAs/GaAs quantum dots with wetting layer (2020).
Sabaeian, Mohammad, and Ghassem Baridi · Superlattices and Microstructures · Elsevier
Coupling the graphene plasmonic with terahertz emission of truncated conic shaped InAs/GaAs quantum dots: A passive approach to enhance the intersubband optical properties (2021).
Sabaeian, Mohammad, and Ghassem Baridi · Physica E: Low Dimensional Systems and Nanostructures · Elsevier
Hybrid quantum dot-graphene layers with improved optical properties in the terahertz spectrum region (2023).
Baridi, Ghassem, et al. · Physica E: Low Dimensional Systems and Nanostructures · Elsevier
Graphene-based chemical field effect transistors: impact of electric double layer model and quantum capacitance on detection capabilities (2026).
Baridi, Ghassem, et al. · Micromachines · MDPI