Negatively Strain-Dependent Electrical Resistance of Magnetically Arranged Nickel Composites: Application to Highly Stretchable Electrodes and Stretchable Lighting Devices

A novel property of the negatively strain‐dependent electrical resistance change of nickel conductive composites is presented. The composite shows negatively strain‐dependent resistance change when magnetically arranged, while most conductive materials show opposite behavior. This negative dependenc...

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Veröffentlicht in:Advanced materials (Weinheim) 2014-05, Vol.26 (19), p.3094-3099
Hauptverfasser: Kim, Sangwoo, Byun, Junghwan, Choi, Seongdae, Kim, Donghyun, Kim, Taehoon, Chung, Seungjun, Hong, Yongtaek
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container_end_page 3099
container_issue 19
container_start_page 3094
container_title Advanced materials (Weinheim)
container_volume 26
creator Kim, Sangwoo
Byun, Junghwan
Choi, Seongdae
Kim, Donghyun
Kim, Taehoon
Chung, Seungjun
Hong, Yongtaek
description A novel property of the negatively strain‐dependent electrical resistance change of nickel conductive composites is presented. The composite shows negatively strain‐dependent resistance change when magnetically arranged, while most conductive materials show opposite behavior. This negative dependency is utilized to produce highly stretchable electrodes and to demonstrate a new conceptual resolution‐sustainable stretchable lighting/display device.
doi_str_mv 10.1002/adma.201304686
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source Wiley Online Library - AutoHoldings Journals
subjects conductive composite
Devices
Display devices
Electrical resistance
Electrodes
Illumination
inkjet-printing
Lighting
Nickel
Positioning
stretchable electrode
stretchable electronics
stretchable lighting
title Negatively Strain-Dependent Electrical Resistance of Magnetically Arranged Nickel Composites: Application to Highly Stretchable Electrodes and Stretchable Lighting Devices
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