Hamid Reza Akbari Hasanjani | Sensor | Innovative Research Award

Innovative Research Award

Hamid Reza Akbari Hasanjani
Affiliation Damghan University
Country Iran
Scopus ID 57063555100
Documents 12
Citations 214
h-index 6
Subject Area Sensor
Event International Research Chemistry Awards
ORCID 0000-0001-9132-071X

The available bibliometric information records documents, citations, and an h-index of in the supplied Scopus profile data. These indicators provide a quantitative description of the researcher’s indexed scholarly output and citation activity, while the subject classification identifies sensor research as the principal research area represented in the profile. [1]

Abstract

Hamid Reza Akbari Hasanjani is a researcher at Damghan University, Iran, with a documented research focus in sensor-related studies. The supplied scholarly profile records Scopus-indexed documents, citations, and an h-index of 6. His researcher identity is further supported by an ORCID record, enabling clearer attribution of scholarly outputs. Within the context of the International Research Chemistry Awards.[1]

Keywords

Hamid Reza Akbari Hasanjani; Innovative Research Award; Sensor Research; Damghan University; Iran; Electrochemical Sensor Research; Biosensor Technology; Research Innovation; Scholarly Impact; Citation Analysis; Scopus Author Profile; Google Scholar; ORCID Profile; Research Impact; Academic Recognition; Sensor Technology; Scientific Contributions; Research Excellence; International Research Chemistry Awards.[2]

Introduction

Sensor research encompasses the design, characterization, and application of systems capable of detecting and measuring physical, chemical, or biological signals. Such research can involve materials science, analytical chemistry, electronics, surface chemistry, and related interdisciplinary fields. The field is relevant to applications in environmental monitoring, industrial process control, healthcare, energy systems, and analytical measurement.[1]

Research Profile

Hamid Reza Akbari Hasanjani is affiliated with Damghan University in Iran. The supplied Scopus information records documents and citations, citation record available for the researcher at the time represented by the supplied data. The researcher is identified by Scopus Author ID and ORCID Persistent identifiers are useful for linking scholarly works to a specific researcher and reducing ambiguity in academic databases.[4]

Research Contributions

The combination of indexed publications and citation records provides one measurable dimension of scholarly contribution. However, bibliometric indicators do not by themselves describe the novelty, methodological quality, reproducibility, practical significance. Consequently, assessment of research contributions is appropriately considered alongside the underlying publications and subject-specific evidence.[3]

Publications

Where individual articles have assigned Digital Object Identifiers , those persistent links can provide direct access to the publisher’s bibliographic record and facilitate accurate identification of the published work. No specific publication was supplied in the source information for this profile; therefore, no unverified is assigned to the researcher here.[4]

Research Impact

Research impact can also be considered through qualitative dimensions, including methodological contribution, reproducibility, relevance to sensor technologies, collaboration, practical applications, and influence on subsequent research. Bibliometric indicators should therefore be interpreted within the researcher’s disciplinary and publication context rather than treated as a complete measure of research quality. [2]

Award Suitability

The Innovative Research Award category of the International Research Chemistry Awards is presented in the context of scientific and research activity. Hamid Reza Akbari Hasanjani’s supplied profile identifies sensor research as the relevant subject area and documents scholarly activity through Scopus-indexed publications, citations, and an h-index. [3]

Conclusion

Hamid Reza Akbari Hasanjani is affiliated with Damghan University, Iran, and is associated with sensor research. The supplied scholarly record documents  Scopus-indexed documents, citations, and an h-index of , together with Scopus Author ID and ORCID . These records provide a concise bibliometric and identification-based overview of the researcher’s academic profile in connection with the Innovative Research Award. [4]

References

  1. Elsevier. (n.d.). Scopus author details: Hamid Reza Akbari Hasanjani, Author ID 57063555100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57063555100
  2. ORCID. (n.d.). ORCID record: Hamid Reza Akbari Hasanjani. ORCID.
    https://orcid.org/0000-0001-9132-071X
  3. International Research Chemistry Awards. (n.d.).
    https://researchchemistry.org
  4. Navid, P., Akbari-Hasanjani, H. R., & Akbari-Hasanjani, R. (2026). Wireless electrochemical sensor capsules endoscopy for gastrointestinal health monitoring: A comprehensive review. Electroanalysis, 38(8), e70211.
    https://doi.org/10.1002/elan.70211

Dr. Wenju Ren | Sensor | Best Researcher Award

Dr. Wenju Ren | Sensor | Best Researcher Award

Chongqing University of Posts and Telecommunications | China

Dr. Wenju Ren is a distinguished researcher and academic currently serving as a Lecturer and Master’s Supervisor at Chongqing University of Posts and Telecommunications. He obtained his Ph.D. from Peking University in 2019, where he developed a strong foundation in advanced analytical and microengineering sciences. His research focuses on the development and application of microfluidic technology, point-of-care molecular diagnostics, and electrochemical sensors aimed at improving healthcare and environmental monitoring. Dr. Ren has made significant contributions to these interdisciplinary fields through innovative designs that integrate micro-scale systems with diagnostic platforms. His scholarly excellence is reflected in over ten publications in top-tier international journals such as Research, Journal of Materials Chemistry A, Journal of Energy Storage, and Nano Energy, where he has served as the first or corresponding author. His work often bridges the gap between fundamental science and real-world applications, contributing to the advancement of portable and efficient diagnostic tools. Throughout his academic journey, Dr. Ren has been recognized for his dedication to research excellence and innovation. He continues to inspire students and collaborators through his commitment to scientific rigor, creative exploration, and translational research that addresses pressing global challenges.

Profile: Scopus

Featured Publication

Ren, W., Xie, X., Yi, Y., Qi, C., Huang, Y., Feng, M., & Zheng, T. (2024). The LiFePO4_4 battery lifespan SoC estimation using Ham-Informer and internal pressure. Journal of Energy Storage.

Ms. Preety Yadav | Sensing | Women Researcher Award

Ms. Preety Yadav | Sensing | Women Researcher Award

Ms. Preety Yadav is an emerging researcher in the field of physics with a strong academic background and hands-on expertise in material science and applied physics. She is currently pursuing her doctoral research at the Netaji Subhas University of Technology, New Delhi, where her work is focused on advanced materials, thin-film deposition, and gas sensing applications. With prior degrees in physics from Kurukshetra University and Gargi College, University of Delhi, she has built a solid foundation in experimental and analytical techniques. Her dedication to scientific advancement is reflected in her growing research contributions and commitment to interdisciplinary applications.

Netaji Subhas University of Technology | India

Author Profile

Google Scholar

Education

Ms. Preety Yadav is currently pursuing her Ph.D. in Physics at Netaji Subhas University of Technology, New Delhi. She holds a Master of Science in Physics from Kurukshetra University, Haryana, and a Bachelor of Science in Physics from Gargi College, University of Delhi. Her strong academic foundation reflects her deep interest in material science, spectroscopy, and applied physics.

Expertise & Skills

She has developed expertise in advanced characterization techniques including XRD, SEM, TEM, XPS, UV-Vis spectroscopy, FTIR, dielectric studies, and gas sensing applications. Additionally, her skills extend to waste-water treatment, showcasing her interdisciplinary approach to research.

Research & Technical Proficiency

Ms. Yadav has hands-on experience in material synthesis techniques such as Sol-Gel, Coprecipitation, Hydrothermal, and Solid-State methods, as well as electrode preparation for sensing and energy-related applications. She is also proficient in thin-film deposition techniques, including thermal deposition, chemical vapor deposition (CVD), sputtering, and spin coating, which strengthen her experimental capabilities in nanomaterials and device fabrication.

Notable Publications

Enhanced degradation of Congo-red dye by Cr³⁺ doped α-Fe₂O₃ nano-particles under sunlight and industrial wastewater treatment
Authors: Preety Yadav, Neeraj Dhariwal, Manju Kumari, Vinod Kumar, OP Thakur
Journal: Chemosphere
Year: 2023

Iron oxide-based nanoparticles for fast-response humidity sensing, real-time respiration monitoring, and noncontact sensing
Authors: Neeraj Dhariwal, Preety Yadav, Manju Kumari, Poonam Jain, Amit Sanger, Vinod Kumar, OP Thakur
Journal: IEEE Sensors Journal
Year: 2023

Fabrication of a room-temperature NO₂ gas sensor with high performance at the ppb level using an rGO/BiOCl heterostructure
Authors: Neeraj Dhariwal, Preety Yadav, Amit Sanger, Sung Bum Kang, MS Goyat, Yogendra Kumar Mishra, Vinod Kumar
Journal: Materials Advances
Year: 2024

Synergistic photocatalytic breakdown of azo dyes coupled with H₂ generation via Cr-doped α-Fe₂O₃ nanoparticles
Authors: Neeraj Dhariwal, Preety Yadav, Manju Kumari, Amit Sanger, Yogendra Kumar Mishra, Vinod Kumar, OP Thakur
Journal: Scientific Reports
Year: 2024

A review unveiling recent advances in the flexible-wearable futuristic thermoelectric device
Authors: Preety Yadav, Neeraj Dhariwal, Amit Sanger, Sung Bum Kang, Vinod Kumar
Journal: Nano Energy
Year: 2025

Engineering an Ultrafast Ambient NO₂ Gas Sensor Using Cotton-Modified LaFeO₃/MXene Composites
Authors: Neeraj Dhariwal, Preety Yadav, Manju Kumari, Akanksha, Amit Sanger, Sung Bum Kang, Vinod Kumar, Om Prakash Thakur
Journal: ACS Sensors
Year: 2024

Conclusion 

Ms. Preety Yadav is a dedicated and promising researcher with a comprehensive background in physics, material science, and applied research. Her academic journey has been supported by a solid foundation of experimental techniques and practical applications. She continues to explore interdisciplinary areas such as nanomaterials, sensing technologies, and environmental applications. With a balance of theoretical knowledge and technical expertise, she is positioned to make significant contributions to her field. Her determination to advance scientific knowledge, coupled with her ability to apply innovative methods to real-world challenges, underscores her potential as a future leader in research and academia.