Md Salauddin
University of Illinois Urbana-Champaign, Kwangwoon University, Korea Electronics Technology Institute
About
I received my Ph.D. degree in Electronic Engineering from Kwangwoon University, Seoul, Korea, in 2019. I am currently a Postdoctoral Research Associate at University of Illinois Urbana-Champaign. I am highly motivated toward scientific innovation and technological development to address the energy crisis in the modern world. My research interest includes Electromagnetic Energy Harvesting, Triboelectric Nanogenerators, Piezoelectric Nanogenerators, Hybrid Nanogenerators, Biomechanical Energy Harvesting, Polymer Surface Modifications, Self-Powered Sensors and Systems, Flexible and Wearable Electronics, Energy Storage and Management, Polymer Nanocomposites, and Renewable Energy.
Employment
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University of Illinois Urbana-Champaign Postdoctoral Research Associate2022 - Present
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Kwangwoon University Postdoctoral Researcher2019 - 2022
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Kwangwoon University Researcher2015 - 2019
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Korea Electronics Technology Institute Researcher2014 - 2015
Education
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Kwangwoon University PhD2014 - 2019
Projects & Funding
Projects & funding information is unavailable.
Publications (60)
- Sustainable production of nitrogen-doped hierarchical porous carbons from fruit peel wastes for high-performance CO2 capture Save
- Intrinsic Coupling of Radiative Cooling and Triboelectric Responses in Dual‐Function ZrO 2 Nanocomposites for Adaptive Thermoregulation Save
- Radiative Cooling Smart Textiles with Integrated Sensing for Adaptive Thermoregulation Save
- Highly Electronegative V 2 CT x /Silicone Nanocomposite‐Based Serpentine Triboelectric Nanogenerator for Wearable Self‐Powered Sensors and Sign Language Interpretation Save
- An Electromagnetic Wind Energy Harvester Based on Rotational Magnet Pole-Pairs for Autonomous IoT Applications Save
- A Hybrid Self‐Powered Arbitrary Wave Motion Sensing System for Real‐Time Wireless Marine Environment Monitoring Application (Adv. Energy Mater. 7/2022) Save
- A High‐Performance Rotational Energy Harvester Integrated with Artificial Intelligence‐Powered Triboelectric Sensors for Wireless Environmental Monitoring System Save
- Silicone-incorporated nanoporous cobalt oxide and MXene nanocomposite-coated stretchable fabric for wearable triboelectric nanogenerator and self-powered sensing applications Save
- Laser-carbonized MXene/ZiF-67 nanocomposite as an intermediate layer for boosting the output performance of fabric-based triboelectric nanogenerator Save
- Ultrahigh‐Output Triboelectric and Electromagnetic Hybrid Generator for Self‐Powered Smart Electronics and Biomedical Applications (Adv. Energy Mater. 40/2022) Save