Mohamed Fakhry Hussein | Solid State Sensors | Young Researcher Award

Young Researcher Award

Mohamed Fakhry Hussein — Alexandria University, Egypt

Mohamed Fakhry Hussein
Affiliation Alexandria University
Country Egypt
Scopus ID 57929844800
Documents 27
Citations 177
h-index 8
Subject Area Solid State Sensors
Event Global Sensor Awards
ORCID 0000-0003-3775-6226

Mohamed Fakhry Hussein is affiliated with Alexandria University, Egypt, and is associated with the research area of Solid State Sensors. His researcher identification records include a Scopus Author ID and an ORCID identifier, providing persistent identifiers that can assist with distinguishing scholarly work and maintaining accurate attribution across research information systems. [1] [2]

This academic recognition profile presents the available researcher information in the context of the Young Researcher Award associated with the Global Sensor Awards. The profile focuses on the documented affiliation, researcher identifiers, and stated subject area rather than making unsupported claims about publication performance or research impact.

Abstract

This profile documents Mohamed Fakhry Hussein as a researcher affiliated with Alexandria University, Egypt, whose stated subject area is Solid State Sensors. The research domain encompasses sensor technologies based on solid-state materials and structures, an area relevant to the development of devices for measurement, detection, monitoring, and signal transduction. The available identification information includes Scopus Author ID 57929844800 and ORCID iD 0000-0003-3775-6226, which provide persistent mechanisms for associating scholarly records with the researcher. [1] [2]

Keywords

Solid State Sensors; Sensor Technology; Sensing Devices; Sensor Materials; Semiconductor Sensors; Microelectronic Sensors; Sensor Systems; Detection Technology; Measurement Systems; Smart Sensing; Research and Development.

Introduction

Solid-state sensing represents an important area of modern sensor research because it enables physical, chemical, biological, and environmental quantities to be converted into measurable electrical or electronic signals. Solid-state sensors commonly employ semiconductor, dielectric, metallic, nanostructured, or other functional materials whose properties respond to changes in the surrounding environment or an applied stimulus.

Research in this field intersects with materials science, electronics, microfabrication, instrumentation, signal processing, and embedded systems. The development of reliable solid-state sensing devices can support applications requiring compact form factors, repeatable measurements, rapid response, and integration with electronic systems.

Within this broader research context, the available profile information identifies Mohamed Fakhry Hussein with Alexandria University and the subject area of Solid State Sensors. The researcher identifiers supplied for this profile provide additional means of locating and verifying scholarly records. [1] [2]

Research Profile

Mohamed Fakhry Hussein is listed in the supplied profile data as being affiliated with Alexandria University in Egypt. His designated subject area is Solid State Sensors, positioning the profile within the broader field of sensing technology and solid-state device research.

Specific publication counts, citation totals, and h-index values were not supplied in the source information for this profile. Accordingly, no numerical research-performance claims are assigned to the researcher in this article.

Research Contributions

Based on the supplied subject classification, the research profile is situated within Solid State Sensors. Relevant scholarly contribution areas associated with this field can include the development and characterization of sensing materials, fabrication of solid-state sensing structures, improvement of measurement sensitivity and selectivity, and integration of sensors with electronic measurement platforms.

  • Investigation of solid-state materials and device structures for sensing applications.
  • Study of sensor response characteristics and measurement performance.
  • Application of electronic and semiconductor principles to sensing technologies.
  • Potential integration of sensing elements with instrumentation and data-acquisition systems.
  • Contribution to the broader development of compact and electronically integrated sensing technologies.

These areas describe the research domain rather than asserting specific experimental achievements that were not included in the supplied researcher data.

Publications

No individual publication titles, journal details, conference papers, or DOI records were supplied for Mohamed Fakhry Hussein in the source information used to prepare this article. Consequently, specific publications and DOI identifiers are not listed here to avoid attributing works without supporting bibliographic information.

The researcher’s Scopus and ORCID records may be used as starting points for reviewing publications and scholarly outputs associated with the supplied identifiers. [1] [2]

Research Impact

The potential research significance of Solid State Sensors extends across instrumentation, environmental monitoring, healthcare technologies, industrial measurement, automation, electronics, and connected sensing systems. Solid-state approaches can facilitate sensor miniaturization and integration with electronic platforms, making the research area relevant to a broad range of sensing applications.

A quantitative assessment of Mohamed Fakhry Hussein’s individual research impact would require verified publication, citation, collaboration, and scholarly-output data. Since documents, citations, and h-index values were not supplied for this profile, this article does not assign numerical impact measures.

Award Suitability

The supplied profile information provides a direct connection between the researcher and the subject area of Solid State Sensors, while the Young Researcher Award provides a recognition framework associated with the Global Sensor Awards. The stated affiliation with Alexandria University and the identified sensor research area provide the principal documented basis for considering the profile within this academic recognition context.

Relevant areas for evaluation may include the originality and scientific relevance of research, quality and consistency of scholarly publications, technical contribution to sensor development, methodological rigor, interdisciplinary relevance, and documented contribution to the sensing-technology community. Any formal award decision should be based on the applicable criteria and independently verifiable submission materials.

Conclusion

Mohamed Fakhry Hussein is presented in the supplied academic profile as a researcher affiliated with Alexandria University, Egypt, with Solid State Sensors identified as the principal subject area. The profile includes Scopus Author ID 57929844800 and ORCID iD 0000-0003-3775-6226, providing persistent researcher-identification references. [1] [2]

The information establishes a clear thematic relationship with sensing technology, while detailed publication, citation, and bibliometric information would be required for a more comprehensive assessment of research output and impact. The profile therefore provides a structured academic recognition overview based only on the information supplied.

References

    1. Elsevier. (n.d.). Scopus author details: Mohamed Fakhry Hussein, Author ID 57929844800. Scopus.
      https://www.scopus.com/authid/detail.uri?authorId=57929844800

Assoc. Prof. Dr. Haiyang Wang | Fiber Sensing Awards | Best Researcher Award

Assoc. Prof. Dr. Haiyang Wang | Fiber Sensing Awards | Best Researcher Award

Assoc. Prof. Dr. Haiyang Wang, North University of China, China

Dr. Haiyang Wang is an Associate Professor and Master’s Supervisor at the School of Semiconductor and Physics, North University of China. He earned his Ph.D. in Physics from the University of Ottawa, Canada, in 2023 under the mentorship of Professor Xiaoyi Bao. His research expertise lies in advanced fiber laser technologies—including random fiber lasers, ultra-narrow linewidth lasers, and mode control—as well as distributed fiber sensing using Brillouin and Rayleigh scattering and micro/nano optical fabrication techniques. Dr. Wang has published 18 peer-reviewed papers in top-tier journals such as Applied Physics Letters, Journal of Lightwave Technology, Optics Letters, and Optics Express, primarily as first or corresponding author. He has led several national-level research projects, including those funded by the National Natural Science Foundation of China, and is a recipient of the China Scholarship Council Doctoral Fellowship and University of Ottawa Entrance Scholarship. Additionally, he serves as Guest Editor for Micromachines and Photonics, and regularly reviews for leading journals in his field.

Professional Profile:

GOOGLE SCHOLAR

Summary of Suitability – Dr. Haiyang Wang for the Best Researcher Award

Dr. Haiyang Wang is an emerging leader in the field of optoelectronics, fiber laser technology, and distributed fiber sensing. As an Associate Professor at the School of Semiconductor and Physics, North University of China, and a graduate of the University of Ottawa under the mentorship of renowned physicist Prof. Xiaoyi Bao, Dr. Wang brings a strong foundation of global academic training and research excellence.

🎓 Education

  • Ph.D. in Physics (2018–2023)
    University of Ottawa, Canada
    Supervisor: Prof. Xiaoyi Bao

  • M.S. in Physics (2015–2018)
    Northeastern University, China

  • B.Sc. in Physics (2011–2015)
    Shenyang Aerospace University, China

💼 Work Experience

  • Associate Professor (May 2023–Present)
    School of Semiconductor and Physics, North University of China

  • Ph.D. Researcher (2018–2023)
    University of Ottawa, Canada
    Focus: Random fiber lasers, fiber sensing, nano-fabrication

🏆 Achievements

  • 📚 18 publications in leading journals such as Applied Physics Letters, Journal of Lightwave Technology, Optics Letters, and Optics Express (as first or corresponding author)

  • 🔬 Principal Investigator for projects under the National Natural Science Foundation of China

  • ✍️ Guest Editor for Micromachines and Photonics

  • 🔁 Reviewer for top journals like Optics Letters, Optics Express, and Journal of Lightwave Technology

🎖️ Awards and Honors

  • 🥇 2018 China Scholarship Council Doctoral Fellowship

  • 🎓 2018 University of Ottawa Entrance Scholarship

  • 🌟 Selected for the Ministry of Education’s Talent Program (China)

Publication Top Notes:

Extra-broad photonic crystal fiber refractive index sensor based on surface plasmon resonance

CITED:85

Metal oxide-graphene-based quasi-D-shaped optical fiber plasmonic biosensor

CITED:58

Quasi-D-shaped optical fiber plasmonic refractive index sensor

CITED:54

Glucose sensor realized with photonic crystal fiber-based Sagnac interferometer

CITED:47

High sensitivity refractive index sensor based on dual-core photonic crystal fiber with hexagonal lattice

CITED:35

Ultra-short polarization beam splitter based on dual core photonic crystal fiber

CITED:27

Tunable surface plasmon resonance polarization beam splitter based on dual-core photonic crystal fiber with magnetic fluid

CITED:26

 

Mr. Saif Alkadhim | Sensor Awards | Best Researcher Award

Mr. Saif Alkadhim | Sensor Awards | Best Researcher Award 

Mr. Saif Alkadhim, Xi’an Jiaotong University, China

Dr. Saif Aldeen Al-Kadhim, a Senior IEEE member, is a distinguished researcher and engineer specializing in electrical engineering, sensor technologies, and IoT applications. He is currently a Ph.D. candidate at Xi’an Jiaotong University, where he is also actively involved in research at the Innovation Harbour Campus. In addition, he serves as the China representative for IEEE PESDay24 and holds an advisory role on the Expert Advisory Committee of the Taizhou Robotics Society. Dr. Al-Kadhim’s research focuses on cutting-edge areas such as in-sensor computing for MEMS and NEMS, electromagnetic analysis, and PCB and circuit design. He has extensive professional experience, including his role as Chief Engineer overseeing the development and quality assurance of advanced sensor and MEMS products. His prior roles include positions as an assistant lecturer and PCB design engineer, where he gained expertise in CNC programming, embedded systems, and IoT solutions. Dr. Al-Kadhim has contributed to several innovative projects, including prototyping wireless CNC controllers, developing 5G antennas, and designing industrial IoT monitoring systems. His professional affiliations with IEEE societies underscore his dedication to advancing technology in power systems, robotics, and industrial electronics. Fluent in both technical and collaborative roles, Dr. Al-Kadhim continues to drive advancements in electrical engineering and applied technology.

Professional Profile:

GOOGLE SCHOLAR

Summary of Suitability for Best Researcher Award: Saif Aldeen Al-Kadhim

Dr. Saif Aldeen Al-Kadhim is a highly qualified candidate for the Best Researcher Award due to his extensive expertise and achievements across multiple facets of electrical engineering, particularly in sensors, IoT, MEMS/NEMS, and electromagnetic analysis. He is an IEEE Senior Member and actively contributes to the academic community, including his role as the China representative for PESDay24 and his advisory position at the Taizhou Robotics Society. His experience includes both teaching and hands-on engineering, giving him a solid mix of practical and theoretical knowledge.

Education:

  • Ph.D. in Electrical Engineering (09/2020 – 07/2024)
    Xi’an Jiaotong University, Xi’an, Shaanxi, China
  • MSEE in Electrical Engineering (09/2015 – 06/2017)
    University of Technology, Iraq
  • Higher Diploma Degree in Power System Engineering (09/2009 – 12/2010)
    Middle Technical University, Iraq
  • BSEE in Electrical Engineering (09/2002 – 07/2006)
    University of Babylon, Iraq

Work Experience:

  • Chief Engineer (01/2020 – Present)
    Responsible for overseeing the development and implementation of new sensor and MEMS technologies. Ensures that sensor and MEMS products meet quality and performance standards, manages a team of engineers, and collaborates with marketing and sales departments to successfully introduce products to the market. Stays updated on the latest developments in sensor and MEMS technology.
  • Assistant Lecturer (01/2019 – 12/2020)
    Assisted the qualitative research team with coordinating interviewer training, arranging transcript services, collating investigator input, and creating codebooks. Worked with the Data Coordinating Center to manage and maintain data for the study database. Additionally, trained CNC operators in making insert changes and minor adjustments, troubleshooted hydraulic, electronic, and mechanical systems, and contributed to CNC program development.
  • PCB Design Engineer (06/2017 – 12/2019)
    AL BADER ELECTRONIC INDUSTRIES, Babylon, Iraq
    Responsible for creating 3D models for PCB footprints, managing PCB documentation, developing custom scripting for automation and quality improvements, and designing embedded systems. Utilized Mentor Graphics tools for schematic entry and PCB design, collaborating with mechanical and hardware developers for component placement.

Significant Performance:

  • Prototype wireless control for CNC machine (09/2017 – 12/2017): Developed a controller used in the university CNC workshop.
  • Microstrip Grid Antenna Array for 5G Mobile Devices (01/2018 – 06/2018): Designed and prototyped the antenna array as part of laboratory experiments.
  • Industrial Cloud Monitoring System based on IoT (06/2018 – 12/2018): Designed and prototyped this system.
  • IoT Management Solution for Fill Level Monitoring for Gravel Silos (01/2019 – 12/2020): Designed and prototyped an IoT solution.

Publication top Notes: