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Sub-0.5 V Highly Stable Aqueous Salt Gated Metal Oxide Electronics

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Abstract
Recently, growing interest in implantable bionics and biochemical sensors spurred the research for developing non-conventional electronics with excellent device characteristics at low operation voltages and prolonged device stability under physiological conditions. Herein, we report high-performance aqueous electrolyte-gated thin-film transistors using a sol-gel amorphous metal oxide semiconductor and aqueous electrolyte dielectrics based on small ionic salts. The proper selection of channel material (i.e., indium-gallium-zinc-oxide) and precautious passivation of non-channel areas enabled the development of simple but highly stable metal oxide transistors manifested by low operation voltages within 0.5 V, high transconductance of similar to 1.0 mS, large current on-off ratios over 107, and fast inverter responses up to several hundred hertz without device degradation even in physiologically-relevant ionic solutions. In conjunction with excellent transistor characteristics, investigation of the electrochemical nature of the metal oxide-electrolyte interface may contribute to the development of a viable bio-electronic platform directly interfacing with biological entities in vivo.
Author(s)
Park, SungjunLee, SeYeongKim, Chang-HyunLee, IlseopLee, Won-JuneKim, SoheeLee, Byung-geunJang, Jae HyungYoon, Myung-Han
Issued Date
2015-08
Type
Article
DOI
10.1038/srep13088
URI
https://scholar.gist.ac.kr/handle/local/14628
Publisher
Nature Publishing Group
Citation
Scientific Reports, v.5
ISSN
2045-2322
Appears in Collections:
Department of Electrical Engineering and Computer Science > 1. Journal Articles
Department of Materials Science and Engineering > 1. Journal Articles
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