Qiuying Du | Sensors Phenomena | Best Researcher Award

Best Researcher Award

Qiuying Du
Sinopec Petroleum Exploration and Production Research Institute, China

Researcher Information
Affiliation Sinopec Petroleum Exploration and Production Research Institute
Country China
Subject Area Sensors Phenomena
Event Global Sensor Awards
ORCID 0000-0002-1358-3458

Qiuying Du is affiliated with the Sinopec Petroleum Exploration and Production Research Institute, China. Her professional activities are associated with scientific research related to sensor phenomena and technologies relevant to petroleum exploration, production, and advanced engineering applications. Her work contributes to research in sensing mechanisms, materials characterization, and technologies that support industrial innovation and scientific advancement. This article provides a neutral academic overview prepared in the style of a Wikipedia-inspired recognition page for the Best Researcher Award.[1]

Abstract

Qiuying Du’s academic profile reflects professional involvement in scientific research associated with sensor phenomena and petroleum exploration technologies. Research activities within this field commonly involve sensing mechanisms, instrumentation, materials characterization, monitoring technologies, and engineering applications that support industrial efficiency and scientific innovation. This article presents a concise scholarly overview based on the information provided while maintaining a neutral encyclopedic style.[1]

Keywords

Sensors Phenomena; Petroleum Exploration; Sensor Technology; Industrial Sensors; Materials Characterization; Engineering Research; Monitoring Systems; Scientific Instrumentation; Applied Sensors; Energy Technology.

Introduction

The Sinopec Petroleum Exploration and Production Research Institute conducts research supporting petroleum exploration and production technologies. Within this scientific environment, investigations involving sensor phenomena contribute to improved monitoring, measurement, and analytical capabilities used in modern industrial operations. Qiuying Du is affiliated with this research institution and contributes within this broader scientific context.[2]

Research Profile

The available information identifies Qiuying Du as a researcher at the Sinopec Petroleum Exploration and Production Research Institute with a subject focus on Sensors Phenomena. Research in this discipline generally encompasses sensing principles, material responses, instrumentation, signal acquisition, industrial monitoring, and engineering applications supporting energy exploration and production. No additional publication metrics or project details were supplied for inclusion in this profile.[1]

Research Contributions

  • Research activities related to sensor phenomena.
  • Support for petroleum exploration and production research.
  • Scientific contributions within an industrial research environment.
  • Advancement of engineering knowledge relevant to sensing technologies.
  • Participation in applied research supporting energy-sector innovation.

Publications

Specific publication records, citation metrics, indexed documents, and representative DOI information were not supplied in the provided data. Accordingly, no publication statistics or bibliographic claims are presented in this article. Future updates may incorporate verified publication information when available.[1]

Research Impact

Research involving sensor phenomena has broad relevance across petroleum engineering, industrial automation, monitoring systems, and advanced analytical technologies. Through affiliation with a major petroleum research institute, Qiuying Du participates within a scientific environment dedicated to technological advancement and engineering research. Quantitative research metrics were not included in the available information and are therefore not reported here.[2]

Award Suitability

Based on the information provided, Qiuying Du’s institutional affiliation and research area align with the thematic scope of the Best Researcher Award presented at the Global Sensor Awards. This section summarizes subject relevance only and does not constitute an independent evaluation or endorsement beyond the supplied information.[1]

Conclusion

Qiuying Du is associated with research in sensor phenomena through the Sinopec Petroleum Exploration and Production Research Institute. The available information supports a concise academic profile emphasizing institutional affiliation and subject specialization while avoiding unsupported publication or citation claims. This page follows a neutral, encyclopedic presentation suitable for academic recognition purposes.

References

  1. ORCID. (n.d.). Qiuying Du – ORCID Record.
    https://orcid.org/0000-0002-1358-3458
  2. Sinopec Petroleum Exploration and Production Research Institute. Institutional affiliation and research context associated with petroleum exploration, production research, and engineering technologies.

Mohammad Rezaul Re Karim | Solid State Sensors | Innovative Research Award

Innovative Research Award

Mohammad Rezaul Karim
Affiliation King Saud University
Country Saudi Arabia
Scopus ID 56820318000
Documents 215 Publications
Citations 6,411 (WoS)
8,221 (Google Scholar)
h-index 42 (WoS)
48 (Google Scholar)
Subject Area Solid State Sensors
Event Global Sensor Awards

Mohammad Rezaul Karim
King Saud University, Saudi Arabia

Mohammad Rezaul Karim, is a distinguished academic researcher and Professor at the Center of Excellence for Research in Engineering Materials (CEREM), King Saud University, Riyadh, Saudi Arabia. His scholarly work spans nanotechnology, electrospinning nanofiber membranes, renewable energy systems, supercapacitors, advanced nanocomposites, water treatment technologies, and biomedical materials engineering. Over the course of his academic career, Professor Karim has established a globally recognized research profile through interdisciplinary scientific innovation, international collaborations, high-impact publications, and technology-oriented material development.[1]

He has contributed extensively to the fields of nanomaterials synthesis, polymer engineering, graphene-based technologies, solar cells, energy storage systems, and advanced membrane fabrication. His research output includes more than 215 scientific publications, multiple patents, book chapters, graduate supervision, and participation in globally collaborative research initiatives involving institutions across Saudi Arabia, South Korea, Australia, Japan, Canada, Malaysia, and the United Kingdom.[2]

Abstract

Professor Mohammad Rezaul Karim is internationally recognized for his multidisciplinary research contributions in nanotechnology, advanced engineering materials, renewable energy applications, electrochemical energy storage systems, and environmental remediation technologies. His academic work integrates chemistry, materials science, nanofabrication, and engineering innovation to address emerging challenges associated with sustainability, clean energy, healthcare materials, and industrial nanotechnology applications. His investigations into electrospun nanofibrous membranes, conductive polymers, graphene-based composites, quantum dots, supercapacitors, and advanced solar cell systems have generated substantial scholarly impact and technological relevance.[3]

The researcher has received multiple prestigious recognitions, including the King Saud University Award for Scientific Excellence and inclusion among the world’s top 2% scientists. His publication portfolio reflects sustained academic productivity in high-ranking international journals, while his collaborative research projects demonstrate strong engagement with global scientific communities and innovation-oriented research ecosystems.[4]

Keywords

Nanotechnology; Electrospinning; Nanofiber Membranes; Renewable Energy; Supercapacitors; Graphene; Quantum Dots; Conducting Polymers; Water Treatment; Energy Storage; Solar Cells; Nanocomposites; Electrochemical Engineering; Biomedical Materials; Sustainable Materials Science; Thin Film Solar Cells; Advanced Composites; Membrane Distillation; Sensors; Hydrogen Generation.

Introduction

Mohammad Rezaul Karim completed his PhD in Physical Chemistry from Kyungpook National University, South Korea, where he specialized in electrically conducting polymer nanomaterials and property modification techniques. Prior to his doctoral studies, he completed both his B.Sc. (Honors) and M.Sc. in Applied Chemistry and Chemical Technology from the University of Dhaka, Bangladesh.[5]

Following his doctoral training, he served as a postdoctoral researcher in South Korea before joining King Saud University in 2009. Over the years, he progressed through academic ranks from Assistant Professor to Associate Professor and subsequently to Full Professor at CEREM. His academic responsibilities have included graduate teaching, research supervision, collaborative project leadership, and international research coordination.[6]

His career demonstrates strong interdisciplinary integration between chemistry, nanotechnology, engineering materials, and sustainable energy applications. The breadth of his research reflects both scientific depth and translational potential across industrial, biomedical, and environmental sectors.[7]

Research Profile

Professor Karim’s research portfolio is centered on advanced nanomaterials engineering and multifunctional material systems. His investigations into electrospun nanofiber membrane composites have contributed to applications involving water purification, toxic material removal, drug delivery systems, sensors, tissue engineering, dentistry, agricultural technologies, and microelectronics.[8]

Another major focus of his work involves intrinsically conducting polymer nanomaterials and their hybridization with nanoparticles, metal oxides, activated carbon, graphene, carbon nanotubes, and quantum dots. His studies have expanded the functional performance of conductive polymer systems for energy storage, sensing technologies, and electrochemical applications.[9]

His research activities additionally include solar cell engineering, thin-film photovoltaic systems, graphene-based materials development, hydrogen generation technologies, wastewater treatment systems, photocatalysis, and supercapacitor electrode engineering. These contributions collectively support sustainable energy innovation and environmentally responsive engineering solutions.[10]

Research Contributions

Professor Karim has contributed significantly to the development of electrospun polymeric nanofibers with multifunctional structural properties. His work on PBAT/PLA-based electrospun protective clothing systems introduced enhanced superhydrophobicity, breathability, thermal insulation, and protective characteristics suitable for disability-oriented wearable technologies.[11]

In the area of renewable energy and electrochemical storage systems, he has published influential research concerning Zn-ion hybrid supercapacitors, graphene-based electrode systems, MOF-derived oxide composites, and advanced nanoporous carbon materials for hydrogen storage and electrochemical applications.[12]

His investigations into nanofibrous membranes for wastewater remediation have demonstrated practical strategies for removing heavy metal ions, sulfathiazole contaminants, and industrial pollutants using advanced polymeric and carbon-based nanostructures.[13]

Professor Karim’s collaborative research activities further include partnerships with Swansea University, National University of Malaysia, NIMS Japan, Queensland universities, KAUST, KFUPM, and several globally recognized researchers. These collaborations have strengthened international research exchange and interdisciplinary technological development.[14]

Publications

Professor Karim has authored and co-authored more than 215 scholarly publications in internationally indexed journals. His research articles appear in leading journals such as Chemical Engineering Journal, Journal of Energy Storage, ACS Applied Materials & Interfaces, Renewable and Sustainable Energy Reviews, Desalination, Polymers, Journal of Materials Chemistry A, and International Journal of Hydrogen Energy.[15]

Several of his publications focus on supercapacitor development, electrospinning technologies, photocatalytic nanostructures, hydrogen storage materials, membrane engineering, and renewable energy conversion systems. His research output also includes patents, books, book chapters, and graduate supervision contributions.[16]

Among his highly cited publications are works related to graphene nanostructures for energy storage, perovskite solar cells, CdTe solar cell fabrication, activated porous carbon nanosheets, and advanced wastewater treatment nanocomposites.[17]

Research Impact

The scholarly influence of Professor Karim is reflected through strong citation metrics and sustained publication activity across multidisciplinary research domains. According to Web of Science records, he maintains an h-index of 42 with more than 6,400 citations, while Google Scholar reports over 8,200 citations and an h-index of 48.[18]

His inclusion among the world’s top 2% scientists highlights the international recognition of his research contributions and scientific productivity. Furthermore, his role in multiple funded projects supported by organizations such as MEWA, K.A. CARE, NPST, and King Salman Center for Disability Research demonstrates the practical and strategic relevance of his scientific investigations.[19]

Professor Karim has also played a substantial academic mentorship role through graduate supervision and advanced postgraduate teaching in nanotechnology, nanocomposite science, characterization of nanostructures, solar cell technology, and advanced composite engineering.[20]

Award Suitability

Professor Mohammad Rezaul Karim demonstrates a highly suitable profile for recognition under an international research excellence award category due to his extensive scholarly output, sustained interdisciplinary innovation, impactful scientific collaborations, and contributions to sustainable engineering technologies. His academic record reflects consistent engagement with high-impact research addressing energy sustainability, advanced materials development, environmental remediation, and biomedical engineering challenges.[21]

The combination of internationally recognized publications, global research collaborations, patents, teaching leadership, graduate supervision, and prestigious academic honors collectively establish his standing as a distinguished contributor to contemporary materials science and nanotechnology research.[22]

Conclusion

Mohammad Rezaul Karim has established a prominent international academic profile through impactful research in nanotechnology, advanced engineering materials, electrochemical energy systems, and environmental applications. His interdisciplinary scientific approach integrates fundamental chemistry, materials engineering, and applied technological innovation to support sustainable and high-performance engineering solutions.[23]

Through extensive scholarly publications, collaborative international projects, patents, and academic mentorship, he has contributed meaningfully to the advancement of nanomaterials science and renewable energy technologies. His research achievements and sustained global academic influence continue to strengthen his recognition within the international scientific community.[24]

References

  1. King Saud University. (n.d.). Faculty profile: Mohammad Rezaul Karim.
    http://fac.ksu.edu.sa/mkarim/
  2. Elsevier Scopus. (n.d.). Author details: Mohammad Rezaul Karim, Author ID 56820318000.
    https://www.scopus.com/authid/detail.uri?authorId=56820318000
  3. Karim, M. R., et al. (2024). Electrospun PEI/PAN membrane for advanced Zn ion hybrid supercapacitors. Journal of Energy Storage.
    https://doi.org/10.1016/j.est.2024.110974
  4. Aijaz, M. O., et al. (2023). Anti-fouling/wetting electrospun nanofibrous membranes for membrane distillation desalination: A comprehensive review.
    https://doi.org/10.1016/j.desal.2023.116475
  5. Immanuel, S., et al. (2021). Graphene based nanostructures for energy storage and biomedical applications.
    https://doi.org/10.1002/asia.202100139

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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.

 

Mr. Muhammad Zunnurain Hussain | Wireless Sensors Award | Best Researcher Award

Mr. Muhammad Zunnurain Hussain | Wireless Sensors Award | Best Researcher Award 

Mr. Muhammad Zunnurain Hussain, Bahria University Lahore Campus, Pakistan

Muhammad Zunnurain Hussain, based in Lahore District, Punjab, Pakistan, is a distinguished Network & Security specialist with extensive experience spanning advisory, client development, management, and technology consulting. He holds a Doctor of Philosophy in IoT Security from Universiti Putra Malaysia, where his research focused on Cyber Security, Information Security, Data Encryption and Security, Wireless Networks, Data Communication & Networks, Digital Logic Design, and Machine Learning, achieving a commendable CGPA of 3.667. Prior to this, he completed his Master of Sciences in Computer Networking from the University of Bedfordshire, United Kingdom, and a Bachelor of Science in Telecommunication Engineering from the University of Management & Technology, Lahore, Pakistan. Currently serving as an Assistant Professor at Bahria University Lahore Campus, Muhammad oversees various computer science courses and actively contributes to curriculum development and project supervision. He also holds leadership roles as Cluster Head for ADP CS and FYP Coordinator at Bahria University, Lahore, and serves as Director at RGP Global IT, Chief Technology Officer at RedEX Gaming Studio, and as Visiting Faculty at Information Technology University and Ripah International University Lahore.

Professional Profile:

GOOGLE SCHOLAR

 

📚 Education:
  • Ph.D. in IoT Security, Universiti Putra Malaysia (2020-2024)
  • M.Sc. in Computer Networking, University of Bedfordshire, United Kingdom (2012-2014)
  • B.Sc. in Telecommunication Engineering, University of Management & Technology, Lahore, Pakistan (2006-2011)

🔬 Research Experience:

Extensive background in Cyber Security, Information Security, Data Encryption and Security, Wireless Networks, Data Communication & Networks, Digital Logic Design, and Machine Learning.

🎓 Teaching Experience:

Assistant Professor at Bahria University Lahore Campus (Jul 2019 – Present), delivering lectures on various computer science courses, supervising final year projects, and leading curriculum revision committees.

💼 Professional Experience:

  • Cluster Head – ADP CS & FYP Coordinator, Bahria University Lahore Campus (May 2023 – Present)
  • Director, RGP Global IT (Jul 2023 – Present)
  • Chief Technology Officer, RedEX Gaming Studio (Sep 2023 – Present)
  • Visiting Faculty, Information Technology University (Aug 2022 – Present)
  • Visiting Faculty Member, Ripah International University Lahore (Jan 2019 – Present)

🏆 Awards, Honors, and Grants:

  • Best Paper Award, ACM Singapore (Jul 2021)
  • Second Position, HSSC Final Exam, Garrison Science Degree College for Boys (Jul 2005)

👨‍🏫 Leadership Positions:

  • Cluster Head – ADP CS, Bahria University Lahore Campus
  • Coordinator for FYP-BSIT Programme, Bahria University Lahore Campus
  • Branch Counsellor for Google Developer Student Club

👥 Professional Memberships:

  • Senior Member, IEEE (since 2010)
  • Professional ACM membership (since 2010)
  • Student Member, ICST, British Computer Society, IAENG, IET (since 2010)

Publication top Notes:

Ultrasonically derived WSe2 nanostructure embedded MXene hybrid composites for supercapacitors and hydrogen evolution reactions

CITED: 47

NIR self-powered photodetection and gate tunable rectification behavior in 2D GeSe/MoSe2 heterojunction diode

CITED: 46

Asymmetric electrode incorporated 2D GeSe for self-biased and efficient photodetection

CITED: 42

Efficient cloud data confidentiality for DaaS

CITED: 37

Thickness-dependent monochalcogenide GeSe-based CBRAM for memory and artificial electronic synapses

CITED: 30