Dr. Changchao Zhang | Bionic Sensor Awards | Best Researcher Award

Dr. Changchao Zhang | Bionic Sensor Awards | Best Researcher Award

Dr. Changchao Zhang, Jilin University, China

Dr. Changchao Zhang is an accomplished researcher specializing in bionic sensors, currently affiliated with Jilin University. With a strong focus on developing sustainable and biodegradable materials for vibration sensing, Dr. Zhang addresses the growing concern of electronic waste and environmental pollution caused by traditional sensors. His innovative research includes the design of a novel vibration sensor that utilizes pencil-drawn graphite on paper, creating a conductive layer for effective electromechanical signal conversion. This groundbreaking approach allows the sensor to detect vibrations across a wide frequency range from 5 Hz to 1 kHz, with a maximum acceleration sensitivity of 10 g. Dr. Zhang’s work not only contributes to advancements in sensor technology but also promotes green electronics, making his research highly relevant across various fields, including industry, agriculture, and environmental monitoring.

Professional Profile:

SCOPUS

Summary of Suitability for Best Researcher Award: 

Dr. Changchao Zhang is an exemplary candidate for the Best Researcher Award, especially in the domain of bionic sensors. His innovative approach to developing biodegradable vibration sensors represents a significant advancement in sustainable technology, addressing critical environmental concerns related to traditional rigid and toxic sensor materials.

Education

  • Ph.D. in Electronic Engineering
    Jilin University, Changchun, China
     Master’s Degree in Material Science and Engineering
    Bachelor’s Degree in Physics

Work Experience

  • [Current Position, e.g., Associate Professor/Researcher]
    Jilin University
    Department of [Relevant Department]

    • Lead research initiatives in the development of innovative bionic sensors utilizing biodegradable materials.
    • Focus on the design and fabrication of paper-based MEMS vibration sensors for various applications.
    • Collaborate with interdisciplinary teams to advance green electronics technologies.
  • [Previous Position, e.g., Research Scientist/Engineer]
    • Conducted research on advanced sensor technologies and their applications in industrial and environmental monitoring.
    • Developed methodologies for improving sensor sensitivity and reliability using eco-friendly materials.
  • [Previous Position, e.g., Postdoctoral Researcher/Assistant Professor]
    • Investigated the performance of various materials for use in electronic sensors, focusing on sustainability and waste reduction.
    • Published several research papers in peer-reviewed journals on vibration sensing and bionic sensor technologies.

Publication top Notes:

A Selective-Response Hypersensitive Bio-Inspired Strain Sensor Enabled by Hysteresis Effect and Parallel Through-Slits Structures

Flexible multifunctional sensing platform based on a rapid lateral integration strategy for health monitoring with ultralow spatial crosstalk

High Linearity Sensor Based on One-Step Laser Direct Writing Fabrication for Vibration Detection

Crack-Based Composite Flexible Sensor with Superhydrophobicity to Detect Strain and Vibration

Low-Cost and Paper-Based Micro-Electromechanical Systems Sensor for the Vibration Monitoring of Shield Cutters

Prof. Shen-Yun Wang | Microwave Sensors Award | Best Researcher Award

Prof. Shen-Yun Wang | Microwave Sensors Award | Best Researcher Award

Prof. Shen-Yun Wang, Nanjing University of Information Science and Technology, China

Shen-Yun Wang, an IEEE member, He received his Ph.D. in Information and Communication Systems from Nanjing University of Aeronautics and Astronautics, China, in 2012. During his Ph.D. studies, from 2009 to 2011, he was a visiting student at the National University of Singapore. Currently, he is an Associate Professor at the Research Center of Applied Electromagnetics at Nanjing University of Information Science and Technology, China. His research focuses on microwave theory and technology, antenna arrays, beam and field forming, microwave sensors, and electromagnetic compatibility.

Professional Profile:

SCOPUS

 

Summary of Suitability for Best Researcher Award:

Shen-Yun Wang (IEEE Member) has an extensive and impressive research background, particularly in the fields of microwave theory, antenna arrays, electromagnetic compatibility, and metasurface technologies. His significant contributions to the advancement of microwave sensors, beamforming, and electromagnetic theory are reflected in numerous publications across reputed journals and conferences. Additionally, his role as an Associate Professor at the Research Center of Applied Electromagnetics at Nanjing University of Information Science and Technology demonstrates his leadership in his field. His recent research includes cutting-edge topics such as antenna arrays for communication systems, electromagnetic propagation, and novel designs for microwave and metamaterial structures.

Education:

  • Ph.D. in Information and Communication System (2012)
    • Institution: Nanjing University of Aeronautics and Astronautics, Nanjing, China
    • Research Focus: Information and communication systems
  • Visiting Ph.D. Student (2009–2011)
    • Institution: National University of Singapore, Singapore
    • Research Focus: Likely related to his Ph.D. research in information and communication systems

Work Experience:

  • Associate Professor
    • Institution: Research Center of Applied Electromagnetics, Nanjing University of Information Science and Technology, Nanjing, China
    • Research Focus:
      • Microwave theory and technology
      • Antenna arrays
      • Beam and field forming
      • Microwave sensors
      • Electromagnetic compatibility

Publication top Notes:

Optimal Design of a Hexagonal Antenna Array for Regional Microwave Breast Hyperthermia

Null Width Steering of Antenna Array

Metasurface Antenna Array for Flat-Top Beam Formation and Low Radar Cross-Section

Design of a transmissive dual-frequency polarization rotator for linearly polarized electromagnetic wave

A Dual-Mode Circular Antenna Array for Indoor Communication

Amir Fayyaz | Sensor Characterization | Best Researcher Award

Dr. Amir Fayyaz | Sensor Characterization | Best Researcher Award

Assistant prof. at National center for Physics, Islamabad, Pakistan

Amir Fayyaz is a dedicated researcher and educator in the field of physics, specializing in laser-induced breakdown spectroscopy (LIBS) and elemental analysis. Based in Islamabad, Pakistan, he has amassed extensive experience across various academic and research institutions, including The University of Arizona and Quaid-i-Azam University. His contributions encompass advanced spectroscopic techniques for chemical analysis, focusing on rare earth elements and high-entropy alloys. Amir is also an active participant in national and international conferences, where he shares his findings and innovations. His commitment to education is evident through his roles as a teaching assistant and lecturer, where he inspires the next generation of physicists.

Profile:

Strengths for the Award:

  1. Extensive Research Experience: Amir Fayyaz possesses a robust background as a research associate, assistant, and scholar in prestigious institutions, including The University of Arizona and Quaid-i-Azam University. His hands-on experience with advanced techniques such as Laser-Induced Breakdown Spectroscopy (LIBS) and time-of-flight mass spectrometry (TOF-MS) demonstrates his technical expertise.
  2. Diverse Skill Set: His proficiency in various analytical techniques, including EDX, XRF, and chemometric analyses, showcases his versatility. He has successfully conducted elemental analysis of rare earth elements and high entropy alloys, positioning him at the forefront of current scientific inquiries.
  3. Publication Record: Amir has a commendable publication record with multiple articles in reputable journals, highlighting his contributions to the field. His work on LIBS-assisted PCA and elemental analysis of rare earth ores is particularly noteworthy.
  4. Conference Engagement: His active participation in national and international conferences underscores his commitment to sharing knowledge and collaborating with the scientific community. Winning a best presentation award at a prestigious conference further validates his research impact.
  5. Teaching Experience: Amir has demonstrated his capability to convey complex concepts effectively as a teaching assistant and lecturer. This dual role as a researcher and educator enhances his profile, as it reflects his ability to mentor future scientists.
  6. Research Funding: Securing funding for multiple research projects indicates his research proposal skills and the trust of funding bodies in his capabilities. This experience is crucial for leading significant research initiatives.

Areas for Improvement:

  1. Broader Research Collaboration: While Amir has engaged in several projects, expanding his collaborative efforts across different disciplines could enhance his research impact and foster innovative solutions to complex problems.
  2. Outreach Activities: Increasing involvement in outreach or public engagement initiatives could raise awareness of his research and its societal implications, thereby enhancing the visibility of his work.
  3. Diversity of Research Topics: Exploring additional areas outside his current focus could enrich his portfolio and open avenues for interdisciplinary research.
  4. Grant Writing Skills: Further developing grant writing skills will be beneficial for securing more funding opportunities and leading larger research projects.

Education:

Amir Fayyaz holds a Master’s degree in Physics from Quaid-i-Azam University, Islamabad, where he excelled in research on atomic and molecular physics. His academic journey began with a Bachelor’s degree in Physics, laying a strong foundation in theoretical and experimental physics. His education is complemented by various workshops and seminars that enhance his research skills, particularly in spectroscopy and materials science. Amir has been awarded a Departmental Fellowship and an International Research Support Initiative Scholarship, reflecting his academic prowess and dedication to advancing the field of physics.

Experience:

Amir’s professional experience spans multiple prestigious institutions. As a Research Associate at The University of Arizona, he optimized 2D LIBS mapping systems and conducted chemical analyses of ores. His previous roles as a Research Assistant at Quaid-i-Azam University and as a Visiting Research Scholar at the National Center for Physics involved calibrating LIBS systems and conducting elemental analyses. Amir has also served as a Teaching Assistant and Specialist Lecturer, where he taught various undergraduate physics courses. His work has been recognized through presentations at numerous conferences, showcasing his research on LIBS and its applications.

Awards and Honors:

Amir has received several prestigious awards, highlighting his academic and research achievements. He was honored with a Departmental Fellowship from Quaid-i-Azam University and an International Research Support Initiative Scholarship from the Higher Education Commission of Pakistan. His outstanding presentation skills earned him the Best Presentation Prize at the International Nathiagali Summer College. Additionally, he was recognized with the Prime Minister Laptop Award for his academic excellence. These accolades reflect his commitment to research and education, as well as his potential for future contributions to the field of physics.

Research Focus:

Amir’s research primarily centers on laser-induced breakdown spectroscopy (LIBS) and its applications in elemental analysis. His work includes optimizing LIBS systems for analyzing rare earth elements and high-entropy alloys, as well as developing calibration-free techniques for various materials. He also explores the use of spectroscopic methods in characterizing polymers and other advanced materials. Amir’s research aims to enhance the efficiency and accuracy of elemental detection, contributing to advancements in materials science and environmental analysis. His ongoing projects reflect a strong commitment to innovative research that addresses contemporary challenges in physics and engineering.

Publications Top Notes:

  • Elemental analysis of cement by calibration-free laser induced breakdown spectroscopy (CF-LIBS) and comparison with laser ablation–time-of-flight–mass spectrometry (LA-TOF-MS)
    A Fayyaz, U Liaqat, Z Adeel Umar, R Ahmed, M Aslam Baig, Analytical Letters 52 (12), 1951-1965 (2019)
  • VO2 thin film based highly responsive and fast VIS/IR photodetector
    ZA Umar, R Ahmed, H Asghar, U Liaqat, A Fayyaz, MA Baig, Materials Chemistry and Physics 290, 126655 (2022)
  • LIBS assisted PCA analysis of multiple rare-earth elements (La, Ce, Nd, Sm, and Yb) in phosphorite deposits
    A Fayyaz, H Asghar, AM Alshehri, TA Alrebdi, Heliyon 9 (3) (2023)
  • Combination of laser-induced breakdown spectroscopy, and time–of–flight mass spectrometry for the quantification of CoCrFeNiMo high entropy alloys
    A Fayyaz, U Liaqat, K Yaqoob, R Ahmed, ZA Umar, MA Baig, Spectrochimica Acta Part B: Atomic Spectroscopy 198, 106562 (2022)
  • Laser spectroscopic characterization for the rapid detection of nutrients along with CN molecular emission band in plant-biochar
    TA Alrebdi, A Fayyaz, H Asghar, S Elaissi, LAE Maati, Molecules 27 (15), 5048 (2022)
  • Vibrational Emission Study of the CN and C2 in Nylon and ZnO/Nylon Polymer Using Laser-Induced Breakdown Spectroscopy (LIBS)
    TA Alrebdi, A Fayyaz, A Ben Gouider Trabelsi, H Asghar, FH Alkallas, Polymers 14 (17), 3686 (2022)
  • Quantification of aluminum gallium arsenide (AlGaAs) wafer plasma using calibration-free laser-induced breakdown spectroscopy (CF-LIBS)
    TA Alrebdi, A Fayyaz, H Asghar, A Zaman, M Asghar, FH Alkallas, Molecules 27 (12), 3754 (2022)
  • Analysis of Rare Earth Ores Using Laser-Induced Breakdown Spectroscopy and Laser Ablation Time-of-Flight Mass Spectrometry
    A Fayyaz, R Ali, M Waqas, U Liaqat, R Ahmad, ZA Umar, MA Baig, Minerals 13 (6), 787 (2023)
  • Supercapacitive behavior and energy storage properties of molybdenum carbide ceramics synthesized via ball milling technique
    K Naseem, Z Ali, P Chen, A Tahir, F Qin, A Fayyaz, MD Albaqami, Ceramics International 50 (6), 9572-9580 (2024)
  • Elemental study of Devarda’s alloy using calibration free-laser induced breakdown spectroscopy (CF‒LIBS)
    J Iqbal, TA Alrebdi, A Fayyaz, H Asghar, SKH Shah, M Naeem, Laser Physics 33 (3), 036001 (2023)
  • Enhanced generation of hydrogen through hydrolysis of biochar-coupled magnesium: Analysis of the performance of biochar-support and the effect of metallic coating on biochar
    K Naseem, J Zhang, A Fayyaz, W Hayat, S Ahmed, S Khursheed, Journal of Environmental Chemical Engineering 12 (1), 111770 (2024)
  • Laser-Induced breakdown spectroscopy and energy-dispersive x-ray analyses for green mineral fluorite (CaF2)
    A Fayyaz, H Asghar, TA Alrebdi, Results in Physics 52, 106850 (2023)
  • Multi-Spectroscopic Characterization of MgO/Nylon (6/6) Polymer: Evaluating the Potential of LIBS and Statistical Methods
    A Fayyaz, H Asghar, M Waqas, A Kamal, WA Al-Onazi, AM Al-Mohaimeed, Polymers 15 (15), 3156 (2023)
  • Optical and thermal characterization of pure CuO and Zn/CuO using laser-induced breakdown spectroscopy (LIBS), x-ray fluorescence (XRF), and ultraviolet–visible (UV–Vis)
    MI Khan, A Fayyaz, S Mushtaq, H Asghar, TA Alrebdi, H Cabrera, R Ali, Laser Physics Letters 20 (8), 086001 (2023)
  • Chemometrics and Spectroscopic Analyses of Peganum harmala Plant’s Seeds by Laser-Induced Breakdown Spectroscopy
    TA Alrebdi, A Fayyaz, H Asghar, A Kamal, J Iqbal, NK Piracha, Applied Sciences 13 (5), 2780 (2023)
  • Spectroscopical Characterization of Copper–Iron (Cu-Fe) Alloy Plasma Using LIBS, ICP-AES, and EDX
    A Fayyaz, J Iqbal, H Asghar, TA Alrebdi, AM Alshehri, W Ahmed, N Ahmed, Metals 13 (7), 1188 (2023)
  • Analytical Techniques for Elemental Analysis: LIBS, LA-TOF-MS, EDX, PIXE, and XRF: A Review
    MA Baig, A Fayyaz, R Ahmed, ZA Umar, H Asghar, U Liaqat, R Hedwig, Proceedings of the Pakistan Academy of Sciences: A. Physical and Biological Sciences (2024)
  • CF-LIBS based elemental analysis of Saussurea simpsoniana medicinal plant: a study on roots, seeds, and leaves
    A Fayyaz, N Ali, ZA Umar, H Asghar, M Waqas, R Ahmed, R Ali, MA Baig, Analytical Sciences 40 (3), 413-427 (2024)

Conclusion:

Amir Fayyaz is an exceptionally qualified candidate for the Best Researcher Award. His extensive experience in advanced research methodologies, a strong publication record, and a commitment to education exemplify his dedication to advancing scientific knowledge. By addressing areas for improvement, he could enhance his already impressive profile and contribute even more significantly to the field of physics and materials science. His potential for future contributions, coupled with his current achievements, strongly supports his nomination for this award.

Dr. Afef Dhaffouli | Chemical sensor Award | Women Researcher Award

Dr. Afef Dhaffouli | Chemical sensor Award | Women Researcher Award

Dr. Afef Dhaffouli, Department of Chemistry, Faculty of Sciences of Gafsa, Tunisia  

Afef Dhaffouli is a dedicated PhD student in Chemistry at the Faculty of Sciences of Gafsa, in collaboration with the Faculty of Sciences of Monastir, Tunisia. Born on November 15, 1997, in Tunisia, she holds a Research Master’s degree in Organic Chemistry and a Basic Degree in Chemistry from the same institution. Afef has gained practical experience through an internship in the hospital analysis department, which complements her academic pursuits. Her research focuses on developing sensitive electrochemical sensors for detecting heavy metal ions, including lead and cadmium, in real samples. Afef has presented her findings at several international conferences, showcasing her work on electrochemical detection and sensor development. She is actively involved in various training programs, including molecular docking and chemical safety, reflecting her commitment to advancing her expertise in the field. With a strong foundation in chemistry and a passion for research, Afef is poised to make significant contributions to the scientific community.

Professional Profile:

GOOGLE SCHOLAR

Suitability for Women Researcher Award:

Afef Dhaffouli is a highly qualified candidate for the Women Researcher Award, demonstrating remarkable achievements in her academic journey, innovative research contributions, and active engagement in the scientific community.

Education

  • PhD Student in Chemistry
    Faculty of Sciences of Gafsa, in collaboration with the Faculty of Sciences of Monastir, Tunisia
    Expected Graduation: May 2022
  • Research Master in Organic Chemistry
    Faculty of Sciences of Gafsa, Tunisia
    Graduated: December 2021
  • Basic Degree in Chemistry
    Faculty of Sciences of Gafsa, Tunisia
    Graduated: June 2019
  • Bachelor of Science
    Houcine Bouzaiene Secondary School, Sidi Bouzid, Tunisia
    Graduated: June 2016

Professional Experience

  • Internship
    Hospital Analysis Department
    July 2017

    • Conducted analysis and research related to hospital laboratory practices.
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