Ranganathan Akimsha | Electronic Nose Technology | Innovative Research Award

Innovative Research Award

Ranganathan Akimsha
Affiliation University Of Kelaniya
Country Sri Lanka
Scopus ID 60262598700
Documents 3
Subject Area Electronic Nose Technology
Event Global Sensor Awards
ORCID 0009-0008-2216-1848

Ranganathan Akimsha
University Of Kelaniya, Sri Lanka

The Innovative Research Award recognizes researchers who demonstrate meaningful scholarly contributions through original scientific investigations, interdisciplinary collaboration, and emerging technological developments. Ranganathan Akimsha of the University Of Kelaniya has established research interests in Electronic Nose Technology, contributing to the advancement of sensing methodologies and analytical applications. The available scholarly profile reflects participation in peer-reviewed research dissemination and international academic visibility through indexed publications.[1]

Abstract

Electronic Nose Technology represents a multidisciplinary research field combining sensor engineering, pattern recognition, artificial intelligence, and analytical chemistry to identify volatile compounds for environmental, medical, agricultural, and industrial applications. Ranganathan Akimsha’s research profile reflects participation in this evolving domain through peer-reviewed scholarly publications indexed in Scopus. The Innovative Research Award acknowledges scientific originality, technical relevance, and commitment to advancing sensing technologies that contribute to future research and practical implementation.[1][3]

Keywords

  • Electronic Nose Technology
  • Chemical Sensors
  • Gas Sensing
  • Pattern Recognition
  • Sensor Systems
  • Analytical Instrumentation
  • Research Innovation

Introduction

Electronic nose systems integrate arrays of chemical sensors with computational algorithms to recognize complex odor patterns and volatile organic compounds. Their applications span disease diagnosis, food quality assessment, environmental monitoring, and industrial process control. Continuous improvements in sensor materials, machine learning, and signal processing have significantly enhanced system performance and reliability. Researchers contributing to this field support scientific progress through experimentation, publication, and interdisciplinary collaboration.[2]

Research Profile

Ranganathan Akimsha is affiliated with the University Of Kelaniya, Sri Lanka. The research profile is represented through Scopus Author ID 60262598700 and ORCID 0009-0008-2216-1848. Available bibliographic information indicates three indexed scholarly documents associated with Electronic Nose Technology and related sensing research. These publications contribute to the dissemination of scientific knowledge within the international research community.[1]

Research Contributions

  • Research in electronic nose sensing methodologies.
  • Support for multidisciplinary sensor-based analytical studies.
  • Contribution to peer-reviewed scientific communication.
  • Participation in advancing chemical sensing technologies.
  • Promotion of evidence-based research and academic collaboration.

Publications

The Scopus author profile lists three indexed research documents that collectively demonstrate scholarly engagement within Electronic Nose Technology. Publication activity serves as an important indicator of scientific productivity and contributes to research visibility through internationally recognized indexing services.[1]

Research Impact

Research impact extends beyond publication counts by encouraging scientific collaboration, reproducibility, technological innovation, and practical applications. Work within Electronic Nose Technology supports improvements in intelligent sensing systems capable of addressing healthcare, agriculture, food safety, and environmental monitoring challenges. Continued publication and collaboration enhance the long-term academic influence of researchers working in this field.[2]

Award Suitability

Based on the available scholarly profile, Ranganathan Akimsha demonstrates characteristics consistent with recognition under the Innovative Research Award, including participation in peer-reviewed research, contributions to Electronic Nose Technology, institutional affiliation with a recognized university, and internationally indexed academic visibility. The Global Sensor Awards recognize scientific excellence through transparent evaluation of originality, research quality, innovation, and professional contribution.[4]

Conclusion

The Innovative Research Award article summarizes the academic profile of Ranganathan Akimsha, highlighting scholarly engagement in Electronic Nose Technology and contributions to sensor science. Through peer-reviewed publications, institutional research activity, and internationally recognized researcher identifiers, the profile reflects ongoing participation in the advancement of sensing technologies while supporting future scientific collaboration and innovation.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Ranganathan Akimsha, Author ID 60262598700. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=60262598700
  2. Gardner, J. W., & Bartlett, P. N. Electronic Noses: Principles and Applications.
    DOI: https://doi.org/10.1093/acprof:oso/9780198559559.001.0001
  3. Review article on electronic nose technologies published in Sensors and Actuators B: Chemical.
    DOI: https://doi.org/10.1016/j.snb.2020.128470
  4. Global Sensor Awards. International Recognition for Excellence in Sensor Science and Innovation.
    https://globalsensorawards.com/

Robina Ashraf | Electro-optic Sensors | Women Researcher Award

Women Research Award

Robina Ashraf
Affiliation Government College Women University Sialkot
Country Pakistan
Scopus ID 56609984000
Documents 19
Citations 289
h-index 11
Subject Area Physics, Computational Materials Science, Nanotechnology, Electro-Optic Sensors
Event Global Sensor Awards
ORCID 0000-0002-0829-6163

Robina Ashraf is a Pakistani physicist and academic researcher serving as Assistant Professor in the Department of Physics at Government College Women University Sialkot. Her research portfolio encompasses density functional theory, computational materials science, nanotechnology, magnetic nanostructures, spintronic materials, optoelectronic materials, and energy-related functional materials. With over thirteen years of teaching and research experience, she has established a record of postgraduate supervision, scholarly publication, and international scientific collaboration. Her work contributes to the understanding and development of advanced materials for next-generation technological applications.[1][2]

Abstract

This article presents an academic overview of Dr. Robina Ashraf, a researcher specializing in solid-state physics and computational materials science. Her scholarly work focuses on the theoretical investigation of advanced materials through Density Functional Theory (DFT), with applications in spintronics, optoelectronics, sensing technologies, nanotechnology, and energy materials. Through research publications, postgraduate supervision, collaborative projects, and peer-review activities, she has contributed to the advancement of materials science research and the development of emerging functional materials for future technological applications.[1]

Keywords

Density Functional Theory, Computational Materials Science, Nanotechnology, Spintronics, Magnetic Nanostructures, Optoelectronic Materials, Energy Materials, MXenes, Semiconductor Physics, Materials Modeling, Solid State Physics, Advanced Functional Materials.

Introduction

Modern materials science increasingly relies on computational approaches to predict, design, and optimize novel materials for technological applications. Researchers working in this field play a crucial role in bridging theoretical understanding with experimental development. Dr. Robina Ashraf has contributed to this interdisciplinary area through research focused on electronic, magnetic, structural, and optical properties of emerging materials. Her academic activities span teaching, research supervision, scientific publication, and international collaboration, reflecting a comprehensive contribution to contemporary physics and materials research.[1]

Research Profile

Dr. Ashraf obtained her Ph.D. in Solid State Physics from the Centre of Excellence in Solid State Physics, University of the Punjab, Lahore. Her academic career includes more than thirteen years of teaching and research experience. She has supervised numerous postgraduate researchers, including completed and ongoing MS/MPhil and Ph.D. projects, while actively participating in national and international research collaborations.[1][2]

  • 21 completed MS/MPhil research projects.
  • 4 ongoing MS/MPhil research projects.
  • 3 ongoing Ph.D. projects as supervisor.
  • 1 ongoing Ph.D. project as co-supervisor.
  • 1 ongoing internal research grant project.
  • 436 citations with an h-index of 12 and i10-index of 12.

Research Contributions

The primary focus of Dr. Ashraf’s research is the investigation of advanced functional materials using first-principles computational approaches. Her studies examine spinel oxides, perovskites, MXenes, semiconductor nanostructures, and related materials to evaluate their suitability for electronic, magnetic, optical, sensing, and energy applications. Through Density Functional Theory calculations, she explores structural stability, electronic band structures, magnetic ordering, optical responses, and transport properties that contribute to the understanding of material behavior at the atomic level.[1]

In addition to research outputs, she contributes to scientific quality assurance through peer-review services for internationally recognized journals including Materials Research Express, International Journal of Energy Research, and 2D Materials. These activities support the dissemination and evaluation of scientific knowledge within the broader materials science community.[3]

Publications

Dr. Ashraf has published eighteen international research articles in SCI and Scopus-indexed journals, with a cumulative impact factor exceeding 41.21. Her publications primarily address computational investigations of emerging materials relevant to spintronic, optoelectronic, and energy-related technologies. The citation record associated with these publications demonstrates scholarly visibility and engagement within the international research community.[2]

  • SCI and Scopus-indexed journal publications.
  • Research focused on advanced computational materials science.
  • Studies addressing spintronic, optoelectronic, sensing, and energy materials.
  • International collaborative research contributions.

Research Impact

The impact of Dr. Ashraf’s work is reflected through scholarly citations, postgraduate mentoring, peer-review activities, and international collaborations. Her research has contributed to the theoretical understanding of novel materials with potential applications in electronics, renewable energy technologies, magnetic devices, and next-generation information systems. Collaborative partnerships with researchers from Pakistan, Saudi Arabia, China, Korea, and other countries have further expanded the reach and interdisciplinary relevance of her work.[1][2]

Award Suitability

Dr. Robina Ashraf demonstrates strong suitability for recognition under the Women Research Award category. Her academic achievements include sustained research productivity, international scholarly collaborations, postgraduate supervision, peer-review service, and contributions to computational materials science. As a council member of the Organization for Women in Science for the Developing World (OWSD Pakistan Chapter) and an active participant in scientific societies, she has also contributed to strengthening the visibility and participation of women in scientific research. Her accomplishments align with the objectives of recognizing excellence, leadership, and impact in research.[1]

Conclusion

Dr. Robina Ashraf has developed a distinguished academic profile characterized by expertise in computational materials science, significant contributions to advanced materials research, successful postgraduate supervision, and active engagement in the international scientific community. Her body of work reflects sustained scholarly commitment and ongoing contributions to the advancement of physics and materials science. These accomplishments support her nomination for recognition within prestigious international research award programs.[1][2]

References

  1. Ashraf, R. (2026). Academic and Research Profile submitted for Women Research Award nomination. Government College Women University Sialkot, Pakistan.
  2. Elsevier. (n.d.). Scopus author details: Dr. Robina Ashraf, Author ID 56609984000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56609984000
  3. ORCID. (n.d.). Researcher Profile: Dr. Robina Ashraf.
    https://orcid.org/0000-0002-0829-6163
  4. Materials Chemistry and Physics. (2021). Example publication associated with computational materials research.
    DOI: https://doi.org/10.1016/j.matchemphys.2021.124982

Prof Dr. Rajendra Kumar | Sensor | Editorial Board Member

Prof Dr. Rajendra Kumar | Sensor | Editorial Board Member 

Prof Dr. Rajendra Kumar | Sensor | Editorial Board Member | Rama University | India

Prof. Dr. Rajendra Kumar is a distinguished academician and researcher in Physics and Engineering Sciences whose extensive career reflects deep expertise in sensing materials, thin films, nanotechnology, plasma-based polymerization techniques, and gas-sensing device development. With a Ph.D. in Physics from Ch. Charan Singh University, Prof. Dr. Rajendra Kumar has accumulated over two decades of higher education experience, serving in progressively responsible roles including Principal of RIG Institute of Hospitality & Management, Professor and Ph.D. Research Coordinator at the Faculty of Engineering & Technology, Rama University, and earlier appointments as Associate Professor and Assistant Professor in Engineering Physics across leading institutions in Kanpur. His research interests span nanofibrous polyaniline thin films, plasma-induced polymerization, semiconductor device modeling, materials characterization, agricultural material studies, and microwave-assisted metallurgy, supported by multiple international workshops, STTPs, and FDPs in machine learning, MATLAB-based scientific approaches, examination reforms, and intellectual property rights. His research skills include advanced thin-film fabrication, polymer material analysis, electronic device evaluation, plasma-based material processing, data interpretation, scientific instrumentation handling, and interdisciplinary experimentation. Prof. Dr. Rajendra Kumar has notable scholarly contributions with internationally indexed works in IEEE, Scopus, and reputed scientific journals, particularly in the areas of gas-sensor development, nanostructured material synthesis, and analytical modeling of semiconductor devices. His professional profile is visible through his Scopus Author ID 57211907190, ORCID, ResearchGate, and Google Scholar, demonstrating impactful research with measurable citation records. Throughout his academic journey, he has earned recognitions and honors for excellence in teaching, research mentorship, and institutional development while contributing to academic committees, research coordination, and university-level quality enhancement efforts.

Professional Profiles: ORCID | Google Scholar | Scopus

Featured Publications 

  1. Tiwari, A., Kumar, R., Prabaharan, M., Pandey, R. R., Kumari, P., Chaturvedi, A., … (2010). Nanofibrous polyaniline thin film prepared by plasma-induced polymerization technique for detection of NO₂ gas. Polymers for Advanced Technologies. Citations: 97

  2. Kumar, R., Singh, S., & Misra, A. K. (2010). Development of NO₂ gas sensor based on plasma polymerized nanostructure polyaniline thin film. Journal of Minerals & Materials Characterization & Engineering. Citations: 24

  3. Gupta, D., Singh, S., Jain, V., & Kumar, R. (2015). Joining of bulk cast iron through microwave energy. International Journal for Technological Research in Engineering. Citations: 5

  4. Kumar, R., Singh, M., & Singh, V. P. (2007). Heterosis and inbreeding depression in relation to seed yield in Indian mustard. National Seminar on Changing Global Vegetable Oils Scenario. Citations: 5

  5. Kumar, R., Prasad, C. M., Singh, S. K., Prasad, S., Singh, R. N., & Turi, D. N. (2004). Effect of grazing on growth rate of pigs under different feeding regimen at farmers’ door. Indian Veterinary Medicine Journal. Citations: 5

  6. Dutt, M. B., Nath, R., Kumar, R., & Sharma, B. L. (2002). An analytical model for pinchoff voltage evaluation of ion-implanted GaAs MESFETs. IEEE Transactions on Electron Devices. Citations: 5

  7. Khan, M. R., Siddiqui, M. B., Kumar, R., & Singh, S. K. (1987). Effect of Meloidogyne incognita on three seasonal ornamental plants. Citations: 5

Omid Abachian Ghasemi | Wireless Sensors and WSN | Best Researcher Award

Dr. Omid Abachian Ghasemi | Wireless Sensors and WSN | Best Researcher Award

PhD Graduate at urmia university, Iran

Omid Abachian Ghasemi is a dedicated researcher in the field of wireless communications, specializing in UAV-assisted and RIS/IRS-assisted wireless networks. With a strong academic foundation, including a Ph.D. in Electrical Engineering from Urmia University (2024), his work focuses on resource and power allocation strategies in wireless-powered sensor networks. He has published several high-impact articles in renowned journals such as IEEE Internet of Things Journal, IEEE Communications Letters, IEEE Access, and Computer Networks, addressing key challenges in throughput maximization and network optimization. Proficient in MATLAB, Python, and LaTeX, Omid combines analytical expertise with practical simulation skills. Fluent in Persian, English, and Turkish, he is well-equipped for international collaboration. His research reflects a deep commitment to advancing next-generation wireless communication systems, making him a strong candidate for recognition as a leading researcher in sensing and communication technologies.

Professional Profile 

🎓 Education Background of Omid Abachian Ghasemi

Omid Abachian Ghasemi has built a solid academic foundation in the field of Electrical Engineering. He earned his Bachelor’s degree in Electrical Engineering from Tabriz University in 2012, where he developed a strong grasp of core engineering principles. Continuing his academic journey, he completed a Master of Science in Electrical Engineering (Communication) at Sahand University of Technology, Tabriz, in 2015, with a focus on advanced communication systems. Most recently, he achieved a significant milestone by completing his Ph.D. in Electrical Engineering – Wireless Communication at Urmia University in 2024, where he specialized in cutting-edge topics such as UAV and RIS-assisted wireless networks. His educational trajectory reflects a consistent dedication to mastering both theoretical and applied aspects of modern communication technologies.

💼 Professional Experience of Omid Abachian Ghasemi

Omid Abachian Ghasemi has cultivated a focused and research-driven professional career in the field of wireless communications and sensor networks. His expertise lies in the design and optimization of advanced wireless systems, particularly involving UAV-assisted, RIS/IRS-enabled, and wireless-powered sensor networks. Throughout his academic journey, he has actively contributed to multiple high-impact research projects, leading to publications in prestigious IEEE journals. His hands-on experience with simulation tools like MATLAB and Python, along with his proficiency in LaTeX for technical writing, has enabled him to develop and communicate complex algorithms and network models effectively. Although primarily rooted in academia, Omid’s work demonstrates a deep understanding of practical engineering challenges, especially in resource allocation, network throughput maximization, and next-generation communication systems, making him a valuable contributor to the future of smart wireless technologies.

🔬 Research Interests of Omid Abachian Ghasemi

Omid Abachian Ghasemi’s research interests lie at the forefront of next-generation wireless communication systems, with a particular focus on UAV-assisted networks, Reconfigurable Intelligent Surfaces (RIS/IRS), and wireless-powered sensor networks. His work centers on developing advanced resource and power allocation algorithms, aiming to maximize network efficiency and throughput in energy-constrained environments. He is especially interested in exploring TDMA and FDMA techniques within RIS-assisted architectures and optimizing UAV placement for improved connectivity and coverage. By integrating aerial platforms and intelligent reflecting surfaces into wireless systems, Omid seeks to overcome traditional limitations in wireless communication, contributing significantly to the advancement of green, adaptive, and high-performance communication networks.

🏆 Awards and Honors of Omid Abachian Ghasemi

While specific awards and honors have not been listed in the available profile, Omid Abachian Ghasemi’s recent achievements reflect a high level of academic excellence and research impact. His acceptance and publication of multiple papers in top-tier IEEE journals, such as IEEE Internet of Things Journal, IEEE Communications Letters, and IEEE Access, serve as strong indicators of his scholarly recognition in the field of wireless communications. These publications, combined with his contributions to cutting-edge research on UAV and RIS-assisted networks, suggest that he is well-positioned to receive prestigious academic and research awards in the near future. His continued dedication and innovative work make him a strong contender for honors such as the Best Researcher Award in sensing and communication technologies.

📚 Publications Top Noted

1. Joint Optimization of UAV Placement and Resource Allocation in FDMA Wireless‑Powered Sensor Networks

  • Authors: Omid Abachian Ghasemi & Mehdi Chehel Amirani
  • Year: 2025 (in IEEE Access)
  • Citation: DOI 10.1109/ACCESS.2025.3574193

2. The design of an RIS‑assisted FDMA wireless sensor network for sum throughput maximization

  • Authors: Omid Abachian Ghasemi; Masoumeh Azghani; Mehdi Chehel Amirani
  • Year: October 2025 (Computer Networks)
  • Citation: DOI 10.1016/j.comnet.2025.111512

3. Resource Allocation in a RIS‑Assisted TDMA Wireless Powered Sensor Network Using UAV

  • Authors: Omid Abachian Ghasemi & Mehdi Chehel Amirani
  • Year: June 2025 (IEEE Communications Letters)
  • Citation: DOI 10.1109/LCOMM.2025.3562118

4. Resource and Power Allocation for Sum‑Throughput Maximization in RIS‑Assisted TDMA Wireless Sensor Networks

  • Authors: Omid Abachian Ghasemi; Mehdi Chehel Amirani; Masoumeh Azghani
  • Year: July 1, 2024 (IEEE Internet of Things Journal)
  • Citation: DOI 10.1109/JIOT.2024.3390199

 Conclusion

Omid Abachian Ghasemi is a strong and promising candidate for the Best Researcher Award, particularly in the fields of intelligent wireless networks and sensor technologies. His recent and focused publication track record in top-tier IEEE journals, combined with his advanced studies and technical skill set, clearly demonstrates innovation and depth.

 

Prof. Kheibar Dashtian | Sensing | Best Researcher Award

Prof. Kheibar Dashtian | Sensing | Best Researcher Award 

Prof. Kheibar Dashtian, Materials and Energy Research Center, Iran

Dr. Kheibar Dashtian, Ph.D. in Analytical Chemistry from Iran University of Science and Technology, is a renowned expert in photo/spectro-electrochemistry, stimuli-responsive nanomaterials, and related fields. With over 150 ISI-indexed publications and an impressive h-index of 53, Dr. Dashtian is highly regarded in the scientific community, having delivered 15 invited seminars and contributed 15 book chapters to scientific literature. He has been recognized with several prestigious awards, including the 24th Kharazmi Youth Festival Award and a ranking among the top 57 leading scientists in Iran in 2023. His contributions to research have earned him recognition as a Highly Cited ISC Scientist and ISI Scientist. Dr. Dashtian is a visiting lecturer at Iran University of Science and Technology and Yasouj University, and he has supervised 45 MSc graduates and 10 PhD graduates. With a keen focus on material development and device fabrication, he has developed systems such as gas sensing devices, microfluidic platforms, and photoelectrochemical systems. Additionally, he holds two patents pending and has made significant contributions to intellectual property. Dr. Dashtian is also actively involved in numerous research collaborations and has completed five postdoctoral research fellowships. He serves on the editorial boards of four ISI-indexed scientific journals and has reviewed over 300 scientific papers.

Professional Profile:

GOOGLE SCHOLAR

SCOPUS

🏆 Summary of Suitability for Best Researcher Award

Dr. Kheibar Dashtian demonstrates extraordinary merit as a researcher in analytical chemistry, with a strong record of scientific innovation, publication, and academic leadership. His accomplishments reflect a rare blend of depth, impact, and consistency across various dimensions of modern research. The following highlights support his high suitability for the Research for Best Researcher Award.

Education 🎓:

  • Ph.D. in Analytical Chemistry
    Yasouj University, Iran (Sep 2014 – Jun 2019)
    Research in nanomaterial preparation and applications in sensing and wastewater treatment.
    Thesis: “Design and preparation of photoelectrochemical biosensors based on the junction of optically active nanostructured semiconductors and polymers for the determination of biological compounds and Cr(VI) ion.”

  • M.Sc. in Analytical Chemistry
    Iran University of Science and Technology, Tehran, Iran (Sep 2012 – Sep 2014)
    Research on the synthesis, surface modification, and applications of mesoporous SBA-15 for optical sensors.
    Thesis: “Design of optical sensors for determination and removal of heavy metals (Ce, La, Pb, Pr) from aqueous media.”

  • B.Sc. in Applied Chemistry
    Iran Payam Noor University, Gachsaran Branch, Iran (Sep 2008 – Feb 2011)
    Research on Chemistry and Oil Technology.

Work Experience 💼:

  • Visiting Lecturer
    Iran University of Science and Technology & Yasouj University
    Delivering lectures in the field of analytical chemistry and nanomaterials.

Achievements 🏆:

  • Publications: Over 150 ISI-indexed articles with an h-index of 53, i10-index of 117, and citations exceeding 7,700.

  • Presentations: Delivered 15 invited seminars at national and international conferences.

  • Book Chapters: Contributed 15 invited chapters to scientific books.

  • Peer Review: Reviewed over 300 scientific papers for more than 100 ISI-indexed journals.

  • Supervision: Advisor to 45 MSc graduates and 10 PhD graduates.

  • Research Collaboration: Involved in 5 major research projects.

Awards & Honors 🏅:

  • 24th Kharazmi Youth Festival Award 🏆

  • Ranked among the top 57 leading scientists in Iran (2023) 🇮🇷

  • Highly Cited ISC Scientist (Top 1%, ESI-recognized, 2019–2023) 🌟

  • Highly Cited ISI Scientist (Top 2%, ESI-recognized, 2019–2023) 🌟

  • Researcher of the Year award recipient in Yasouj, Iran 🥇

Intellectual Property 💡:

  • 2 patents pending related to gas sensing devices, electrospray pyrolysis systems, and microfluidic platforms.

Editorial Roles 📚:

  • Editorial board member of 4 ISI-indexed scientific journals.

  • Referee for scientific papers across various journals.

Publication Top Notes:

Carbon dot-ZIF-67-infused tragacanth hydrogel films: leveraging tunable luminescence through displacement mechanisms for anthrax detection

Recent advancements in biosensors for diagnosis of ovarian cancer: Analytical approaches

Biological Ce/Fe-metal organic framework multifunctional nanozyme-based colorimetric sensor array for multi-analyte detection in human sweat

Transformative personalized oxalate biomarker analysis through a wrist-worn microneedle device integrated with duplex nanozyme toolbox

Molecularly imprinted polymer based on MIL-101 (Cr) MOF incorporated polyvinylidene for selective adsorption and separation dye with improved antifouling properties

Dispersive micro-solid phase extraction coupled with spectrophotometric using (MgFe CLDH)/GO magnetically separable sorbent for pre-concentration of anionic food dyes in water samples

CoMoO4 nano-architecture-based supercapacitors: Tunable properties, performance optimization, and prospective applications

Assist. Prof. Dr. Nashwan Ali | Electrode Sensor | Best Researcher Award

Assist. Prof. Dr. Nashwan Ali | Electrode Sensor | Best Researcher Award 

Assist. Prof. Dr. Nashwan Ali, University of Samarra, France

Dr. Nashwan Hussein Ali is an analytical chemist with expertise in electrochemistry, petroleum chemistry, and water analysis. He earned his Ph.D. (2015), M.Sc. (2012), and B.Sc. (2009) in Analytical Chemistry from Tikrit University, Iraq. Currently, he is an Invited Researcher at the University of Poitiers, France, focusing on electrochemical activity mapping of Pt-CeO₂ gradient films. He previously served as an Assistant Professor at the University of Samarra and a Lecturer at Hayat Private University. With extensive experience in analytical techniques such as HPLC, GC-FID, and spectroscopy, he has also worked as an analytical chemist in the petrochemical industry.

Professional Profile:

ORCID

SCOPUS

Summary of Suitability for Best Researcher Award

Dr. Nashwan Hussein Ali has a strong research background in analytical chemistry, electrochemistry, and petroleum chemistry. His extensive experience as a researcher and lecturer, along with multiple publications in peer-reviewed journals, makes him a suitable candidate for the Best Researcher Award.

🎓 Education:

  • 📜 Ph.D. in Analytical Chemistry – Tikrit University, Iraq (2012 – 2015)
  • 🧪 Master of Science in Analytical Chemistry – Tikrit University, Iraq (2009 – 2012)
  • ⚛️ Bachelor of Science in Chemistry – Tikrit University, Iraq (2005 – 2009)

💼 Work Experience:

  • 🔬 Invited Researcher (Apr 2022 – Present)

    • University of Poitiers, UFR SFA, Equipe SAMCat – IC2MP UMR CNRS 7285, France
    • Research Topic: Electrochemical activity mapping of Pt-CeO₂ gradient films using bipolar electrochemistry
    • Supervised by Prof. ZIGAH Dodzi
  • 🎓 Assistant Professor (Dec 2016 – Apr 2022)

    • University of Samarra, College of Applied Science, Iraq
    • Taught:
      • 🧪 Analytical Electrochemistry (Master’s students)
      • 📘 General Chemistry (Undergraduate)
      • 🌱 Green Chemistry (Undergraduate)
  • 📖 Lecturer (Dec 2013 – Feb 2016)

    • Hayat Private University for Science and Technology (HPUST), Erbil, Iraq
    • Taught:
      • ⚗️ Analytical Chemistry (Undergraduate)
      • 🌿 Green Chemistry (Undergraduate)
  • 🏭 Analytical Chemist (Apr 2011 – Jan 2014)

    • Arab Company for Detergent Chemicals (ARADET), Baiji Refinery
    • Conducted chemical analysis for petroleum and water samples using advanced techniques such as HPLC, GC-FID, GC/MS, Karl Fischer titration, UV-Vis spectroscopy.
    • Performed quality control on crude oil properties and industrial water treatment.

🏆 Achievements, Awards & Honors:

  • 🏅 Recognized Researcher in Electrochemistry and Analytical Chemistry
  • 📖 Published Scientific Papers in reputable journals on Electrochemical Methods, Green Chemistry, and Petroleum Analysis
  • 🏆 Academic Excellence Awards for contributions to teaching and research in Analytical Chemistry
  • 🎤 Speaker & Presenter at international conferences in Electrochemistry and Green Analytical Methods

Publication Top Notes:

High-Performance ZIF-7@PANI Electrochemical Sensor for Simultaneous Trace Cadmium and Lead Detection in Water Samples: A Box–Behnken Design Optimization Approach

Spectrophotometric Determination of Captopril in Pharmaceutical Formulations based on Ion-Pair Reaction with the Red Congo

Synthesis and characterization of some new Indazolone and Carbohydrazide derivatives from azachalcones

Determination of loperamide HCL in pharmaceutical preparations using modified lon selective electrode

Determination of metoclopramide in pharmaceutical commercial using flow injection chemiluminescence technique