Sukjoon Hong
Hanyang University 기계공학과 · 工学
홍석준 교수 연구실은 유연하고 신축성 있는 투명 전도체 및 에너지 장치에 초점을 맞춘 미래형 웨어러블 전자소자 기술을 연구하고 있습니다. 주로 은 나노와이어 기반의 투명 전기 히터, 금속 그리드 및 초박공성 전도체를 활용한 스마트 터치패널, 그리고 전도성 고분자와 나노와이어를 조합한 스트레처블 슈퍼커파시터 등 다양한 응용을 개발하고 있습니다. 특히 레이저 리소그래피 기반의 정밀 패터닝 기술을 통해 기계적 신축성과 전기적 안정성을 동시에 확보한 스트레처블 전자소자를 구현하고 있습니다. 이는 의료용 웨어러블 기기, 인공伪装, 스마트 센서 등에 응용 가능성이 큽니다.
Figures are computed from collected data and may differ slightly.
A highly stretchable and transparent electrical heater is demonstrated by constructing a partially embedded silver nanowire percolative network on an elastic substrate. The stretchable network heater is applied on human wrists under real-time strain, bending, and twisting, and has potential for lightweight, biocompatible, and versatile wearable applications.
We introduce a facile approach to fabricate a metallic grid transparent conductor on a flexible substrate using selective laser sintering of metal nanoparticle ink. The metallic grid transparent conductors with high transmittance (>85%) and low sheet resistance (30 Ω/sq) are readily produced on glass and polymer substrates at large scale without any vacuum or high-temperature environment. Being a maskless direct writing method, the shape and the parameters of the grid can be easily changed by CA
Transparent and stretchable energy storage devices have attracted significant interest due to their potential to be applied to biocompatible and wearable electronics. Supercapacitors that use the reversible faradaic redox reaction of conducting polymer have a higher specific capacitance as compared with electrical double-layer capacitors. Typically, the conducting polymer electrode is fabricated through direct electropolymerization on the current collector. However, no research have been conduct
Development of an artificial camouflage at a complete device level remains a vastly challenging task, especially under the aim of achieving more advanced and natural camouflage characteristics via high-resolution camouflage patterns. Our strategy is to integrate a thermochromic liquid crystal layer with the vertically stacked, patterned silver nanowire heaters in a multilayer structure to overcome the limitations of the conventional lateral pixelated scheme through the superposition of the heate
We introduce a facile method to enhance the functionality of a patterned metallic transparent conductor through selective laser ablation of metal nanowire percolation network. By scanning focused nanosecond pulsed laser on silver nanowire percolation network, silver nanowires are selectively ablated and patterned without using any conventional chemical etching or photolithography steps. Various arbitrary patterns of silver nanowire transparent conductors are readily created on the percolation ne
Owing to its low mechanical compliance, liquid metal is intrinsically suitable for stretchable electronics and future wearable devices. However, its invariable strain-resistance behavior according to the strain-induced geometrical deformation and the difficulty of circuit patterning limit the extensive use of liquid metal, especially for strain-insensitive wiring purposes. To overcome these limitations, herein, novel liquid-metal-based electrodes of fragmented eutectic gallium-indium alloy (EGaI
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