Abdulkadir Sanli | Smart Materials | Best Researcher Award
Dr. Abdulkadir Sanli, Imperial College London, United Kingdom.
Dr. Abdulkadir Sanli ๐จโ๐ฌ is a postdoctoral research associate at Imperial College London ๐ฌ๐ง, specializing in bioengineering and smart diagnostics. His work includes NFC-enabled plant virus detection ๐ฟ๐ฒ and gamified home rehabilitation tools for children with cerebral palsy ๐ง ๐ฎ. Previously, he served as Assistant Professor and Deputy Head at Turkish-German University ๐น๐ท, contributing to research, teaching, and career development. With a Ph.D. in electrical engineering from Technische Universitรคt Chemnitz ๐ฉ๐ช, his career spans academia and industry across Germany, China ๐จ๐ณ, Turkey, and the UK. Dr. Sanli blends nanomaterials, sensors, and human-centered technology for impactful global solutions ๐๐ฌ.
Publication Profiles
Orcid
Google Scholar
ย Education & Experienceย
๐ Education:
-
๐ Ph.D. in Electrical Engineering โ TU Chemnitz, Germany (2013โ2018)
-
๐ M.Eng. in Measurement & Sensor Tech โ Coburg University, Germany (2010โ2012)
-
๐ Joint M.Eng. Program โ University of Shanghai for Science and Technology, China (2011)
-
๐ B.Sc. in Electrical-Electronic Engineering โ Dumlupฤฑnar University, Tรผrkiye (2005โ2009)
๐ผ Professional Experience:
-
๐งช Postdoctoral Research Associate โ Imperial College London, UK (2022โPresent)
-
๐จโ๐ซ Assistant Professor / Deputy Head โ Turkish-German University, Tรผrkiye (2019โ2024)
-
๐ฏ Director, Career Center โ Turkish-German University (2019โ2022)
-
๐จโ๐ซ Lecturer โ Turkish-German University (2018โ2019)
-
๐ฌ Research Assistant โ TU Chemnitz, Germany (2013โ2018)
-
๐ง Researcher (MSc Thesis) โ ChenYang Technologies, Germany (2012)
Suitability for the Award
Dr. Abdulkadir Sanli is a highly accomplished and internationally recognized researcher whose work in bioengineering, sensor technologies, and nanocomposite materials makes him an exemplary candidate for the Best Researcher Award. With a research career defined by interdisciplinary innovation, global collaboration, and societal impact, Dr. Sanli has consistently delivered pioneering solutions to real-world challenges in healthcare, agriculture, and smart materials. His scientific leadership, publication record, and groundbreaking innovationsโespecially in low-cost diagnostics, pediatric rehabilitation, and functional nanomaterialsโposition him as a leading contributor to modern engineering science.
ย Professional Development
Dr. Sanliโs professional journey is marked by global collaboration ๐, academic leadership ๐๏ธ, and innovative research ๐. He has mentored MSc and PhD candidates, managed nationally funded projects, and built strong university-industry relations through career development initiatives ๐ค. He introduced hands-on learning with gamified rehabilitation devices ๐ฎ and sensor-based automation ๐ง. With experience across the UK, Tรผrkiye, Germany, and China, he brings a multicultural, multidisciplinary outlook ๐จโ๐ซ๐. He continues to evolve in digital health tech, diagnostics, and smart materials, contributing to real-world applications that improve human well-being ๐กโค๏ธ.
ย Research Focusย
Dr. Sanliโs research lies at the intersection of smart materials, bioengineering, and diagnostic systems โ๏ธ๐งช. His PhD focused on strain-sensitive CNT-based nanocomposites for advanced sensing ๐งต๐. At Imperial College, he leads projects like NFC-based lateral flow assays (e-LFA) for plant virus detection ๐ฑ๐ฒ and SqueezAble, a soft-sensing rehab tool for children with cerebral palsy ๐ค๐ง . His work applies embedded electronics, soft robotics, and mobile integration to address global health and agricultural challenges ๐๐ฌ. He also explores gamification, automation, and electromechanical modeling for next-gen sensor applications ๐ฏโก.
ย Awards & Honorsย
-
๐ Doctoral Grant Recipient โ Turkish Ministry of Education (Grant Nr. 1416)
-
๐ Postdoctoral Appointment โ Imperial College London, Department of Bioengineering
-
๐๏ธ Project Leadership Roles โ PI on multiple funded projects in Tรผrkiye and UK
-
๐ International Joint Program Graduate โ Coburg University & USST, China
-
๐ Multinational Researcher Experience โ Germany, UK, Tรผrkiye, China
Publication Top Noted
-
๐ Flexible carbon nanotube films for high performance strain sensors โ Cited by: 346 ๐ | Year: 2014 ๐
-
๐ Piezoresistive characterization of multi-walled carbon nanotube-epoxy based flexible strain sensitive films by impedance spectroscopy โ Cited by: 151 ๐ | Year: 2016 ๐
-
๐ Piezoresistive performance characterization of strain sensitive multi-walled carbon nanotube-epoxy nanocomposites โ Cited by: 145 ๐ | Year: 2017 ๐
-
๐ Electrical impedance analysis of carbon nanotube/epoxy nanocomposite-based piezoresistive strain sensors under uniaxial cyclic static tensile loading โ Cited by: 30 ๐ | Year: 2020 ๐
-
๐ Piezoresistive pressure sensor based on carbon nanotubes/epoxy composite under cyclic loading โ Cited by: 23 ๐ | Year: 2018 ๐
-
๐ Investigation of temperature effect on the electrical properties of MWCNTs/epoxy nanocomposites by electrochemical impedance spectroscopy โ Cited by: 20 ๐ | Year: 2020 ๐
ย is a Professor and Head of the Department of Civil Engineering at Inha University, Korea. His expertise spans hazard risk analysis,
. With a Ph.D. from Georgia Institute of Technology, he has held key roles in academia and industry, including POSCO E&C and Daegu University. A prolific researcher, he leads cutting-edge projects in digital twins, CFRP reinforcements, and AI-driven structural analysisย 
. He actively contributes to global conferences and editorial boards, shaping the future of civil engineering innovationย
.
ย Ph.D. in Civil Engineeringย โ Georgia Institute of Technology (2010)
ย Professor & Headย โ Inha University (2024โPresent)
ย Graduate Research Assistantย โ Georgia Tech & KAIST
. Committed to innovation, he continues to pioneer advanced construction materials, ensuring structural integrity and sustainability for future generationsย 
.
. His research spansย
ย for predictive maintenance. His work onย carbon fiber reinforcementย
ย aims atย sustainable infrastructureย
. With expertise inย high-speed rail bridge dynamicsย
ย andย concrete deterioration analysisย
, his research contributes to safer, longer-lasting structures in civil engineering.
ย Best Paper Awardย โ Korea Society of Civil Engineers
ย Flexural capacity of fiber reinforced concrete with a consideration of concrete strength and fiber contentย โย Construction and Building Materialsย (2017) โย
ย Cited by: 173ย
ย Influence of concrete strength combined with fiber content in the residual flexural strengths of fiber reinforced concreteย โย Composite Structuresย (2017) โย
ย Investigation of extreme environmental conditions and design thermal gradients during construction for prestressed concrete bridge girdersย โย Journal of Bridge Engineeringย (2012) โย 

ย Application of probabilistic neural networks for prediction of concrete strengthย โย Journal of Materials in Civil Engineeringย (2005) โย 
ย Analysis of thermal environmental effects on precast, prestressed concrete bridge girders: temperature differentials and thermal deformationsย โย Advances in Structural Engineeringย (2012) โย 
ย Crack-closing performance of NiTi and NiTiNb fibers in cement mortar beams using shape memory effectsย โย Composite Structuresย (2018) โย 
ย Experimental study of the reinforcement effect of macro-type high strength polypropylene on the flexural capacity of concreteย โย Construction and Building Materialsย (2016) โย
ย A vision-based dynamic rotational angle measurement system for large civil structuresย โย Sensorsย (2012) โย 