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계층적 멀티스케일 하이브리드 나노물질을 이용한 투명 유연 전극소자 공정
김권규(Kyun Kyu Kim),고승환(Seung Hwan Ko),이필립(Phillip Lee),함주연(Jooyeun Ham),이진환(Jinhwan Lee) 대한기계학회 2014 대한기계학회 춘추학술대회 Vol.2014 No.11
Future electronics are expected to ultimately be in the form of wearable electronics. To realize wearable electronics, the electric components should be soft, flexible, and even stretchable to be human-friendly. Here we present a novel method of hierarchical multiscale hybrid nanocomposites of Carbon nanotube and Silver nanowire for highly, stretchable, or transparent conductors. The hybird nanocomposites presents enhanced electrical conductivity and optical transparency of relatively bigger Ag nanowire backbone providing efficient multiscale electron transport path with the local CNT percolation network. The highly elastic hybrid nanocomposite conductors and highly transparent flexible conductors can be mounted on any non-planar or soft surfaces to realize human-friendly electronics interface for future wearable electronics.
Kim, Kyun Kyu,Hong, Sukjoon,Cho, Hyun Min,Lee, Jinhwan,Suh, Young Duk,Ham, Jooyeun,Ko, Seung Hwan American Chemical Society 2015 NANO LETTERS Vol.15 No.8
<P>To overcome the limitation of the conventional single axis-strain sensor, we demonstrate a multidimensional strain sensor composed of two layers of prestrained silver nanowire percolation network with decoupled and polarized electrical response in principal and perpendicular directional strain. The information on strain vector is successfully measured up to 35% maximum strain with large gauge factor (>20). The potential of the proposed sensor as a versatile wearable device has been further confirmed.</P><P><B>Graphic Abstract</B> <IMG SRC='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/nalefd/2015/nalefd.2015.15.issue-8/acs.nanolett.5b01505/production/images/medium/nl-2015-015058_0006.gif'></P><P><A href='http://pubs.acs.org/doi/suppl/10.1021/nl5b01505'>ACS Electronic Supporting Info</A></P>