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정훈의

Jeong, Hoon Eui
Multiscale Biomimetics and Manufacturing Lab.
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형상기억특성 및 자극감응성을 지니는 다상의 셀룰로오스 유도체 기반 표면 적응성 다중 화소 비색 피부

Alternative Title
Ultra-Adaptable and Multi-pixel Photonic Skin Based on of a Shape-Memory, Responsive Multi-phase Cellulose Derivative
Author(s)
박성진이상현성민호황인솔선가현강민수김재일최건준장혜진이주성정훈의
Issued Date
2020-09-14
URI
https://scholarworks.unist.ac.kr/handle/201301/78221
Citation
한국정밀공학회 2020년도 통합학술대회
Abstract
Photonic skins enable a direct and intuitive visualization of various physical and mechanical stimuli with eye-readable colorations by intimately laminating to target substrates. However, developments of the skins are lagging behind compared to that of electronic skins. Herein, an ultra‐adaptable, large‐area, multi-pixel photonic skin based on a naturally abundant and durable biopolymer of a shape‐memory, responsive multi-phase cellulose derivative, is presented. The wearable, large-scale and multipixel photonic skin mainly consists of a photonic sensor made of meso-phase cholesteric hydroxypropyl cellulose and an ultra‐adaptable adhesive layer made of amorphous hydroxypropyl cellulose. It is demonstrated that multi-layered flexible architectures and the multi-phase cellulose derivative-based integrated photonic skins show not only seamlessly bonding to a wide range of biological and engineered surfaces, with a maximum of ≈180 times higher adhesion strengths compared to those of the polydimethylsiloxane adhesive, but also direct converting by spatiotemporal stimuli into visible color alterations in the large‐area, multipixel array. These colorations can be simply turned into 3D strain mapping data for digital camera imaging.
Publisher
한국정밀공학회

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