Papers
7
Total Citations
559
H-Index
7
About
Jae Joon Kim is a pioneering researcher at the intersection of flexible electronics, wearable sensing, and energy harvesting technologies. His work focuses on electronic skins, triboelectric nanogenerators, and human-machine interfaces — fields with transformative implications for healthcare monitoring, robotics, and next-generation wearables. Kim's most influential contribution, his 2018 study on multidirectional electronic skins (214 citations), demonstrated how microstructure engineering could precisely tailor force sensitivity and selectivity in piezoresistive sensors — a breakthrough enabling smarter, more responsive wearable devices. He has since advanced triboelectric nanogenerator technology significantly, developing ferroelectricity-coupled MXene-based stretchable devices and biodegradable biogel-based systems that balance performance with sustainability, collectively attracting over 190 citations across two 2022 publications alone. His 2022 work on frequency-selective acoustic and haptic smart skins (128 citations) introduced dual-mode sensing capabilities critical for noise-resilient human-machine communication. More recently, his cochlea-inspired self-powered acoustic sensor reflects his growing interest in biomimetic design. Across his career, Kim has consistently pushed the boundaries of multifunctional, sustainable, and bioinspired sensing platforms, establishing himself as a compelling voice in the future of intelligent wearable electronics.
Research Focus
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