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Dry Transient Electronic Systems by Use of Materials that Sublime

Authors
Kim, Bong HoonKim, Jae-HwanPersano, LuanaHwang, Suk-WonLee, SeungminLee, JungyupYu, YongjoonKang, YongseonWon, Sang M.Koo, JahyunCho, Youn KyoungHur, GyumBanks, AnthonySong, Jun-KyulWon, PhillipSong, Young MinJang, Kyung-InKang, DaeshikLee, Chi HwanPisignano, DarioRogers, John A.
Issue Date
Mar-2017
Publisher
WILEY-V C H VERLAG GMBH
Citation
ADVANCED FUNCTIONAL MATERIALS, v.27, no.12
Journal Title
ADVANCED FUNCTIONAL MATERIALS
Volume
27
Number
12
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/39320
DOI
10.1002/adfm.201606008
ISSN
1616-301X
Abstract
The recent emergence of materials for electronic systems that are capable of programmable self-destruction and/or bio/eco-resorption creates the potential for important classes of devices that cannot be easily addressed using conventional technologies, ranging from temporary biomedical implants to enviromentally benign environmental monitors to hardware secure data systems. Although most previous demonstrations rely on wet chemistry to initiate transient processes of degradation/decomposition, options in "dry transient electronic systems" could expand the range of possible uses. The work presented here introduces materials and composite systems in which sublimation under ambient conditions leads to mechanical fragmentation and disintegration of active devices upon disappearance of a supporting substrate, encapsulation layer, interlayer dielectric and/or gate dielectric. Examples span arrays of transistors based on silicon nanomembranes with specialized device designs to solar cells adapted from commercial components.
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