Young Kee Shin
Papers
4
Total Citations
264
H-Index
4
About
Young Kee Shin is a pioneering researcher at the forefront of flexible electronics and neuromorphic computing, whose work bridges the gap between artificial tactile perception and brain-inspired hardware. His major contributions center on developing advanced electronic skins (e-skins) that mimic human touch, notably through his highly cited 2023 study on micropyramid array bimodal e-skins for intelligent material and surface shape perception, which has garnered 116 citations. Shin further advanced polymer-based e-skins for tactile and non-contact sensing, earning 75 citations for his comprehensive review of these materials. In parallel, he has made significant strides in neuromorphic engineering, demonstrating classical conditioning behavior in TiO2 nanowire-based optoelectronic memristors (51 citations) and operant conditioning reflexes in transparent Ta2O5 homo-structured devices (22 citations). His work uniquely integrates machine learning with capacitive sensing and optoelectronic synaptic devices, pushing the boundaries of artificial intelligence hardware. Shin’s research not only achieves high citation impact but also lays the groundwork for next-generation intelligent systems capable of learning and adapting, making him a key figure in the evolution of smart materials and neuromorphic computing.
Research Focus
Key Achievements
Top Papers
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