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Identifying Key Transport Mechanisms in Organic Antiambipolar Transistors

Authors
Kim, Chang-HyunYoo, Hocheon
Issue Date
Aug-2021
Publisher
WILEY
Keywords
antiambipolar transistors; charge transport; device physics; organic semiconductors; p& #8208; n heterojunction
Citation
ADVANCED ELECTRONIC MATERIALS, v.7, no.8
Journal Title
ADVANCED ELECTRONIC MATERIALS
Volume
7
Number
8
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/81894
DOI
10.1002/aelm.202100167
ISSN
2199-160X
Abstract
Antiambipolar current is an enabling feature for a wide range of unconventional devices. At the same time, it still remains as a new phenomenon without sufficiently deep understanding. This article sheds light on the principles of organic antiambipolar transistors (AATs) that exploit this fundamental phenomenon, focusing on the identification of their governing charge-transport mechanisms. Variable-temperature current-voltage measurements are employed as a key diagnosis tool, and a series of in-depth physical analyses are provided to directly correlate the whole AAT with its sub-component field-effect transistors. The gate-selective potential transition and drift over the depleted channel are found to be responsible for the uniquely shaped AAT switching curve, thus laying a foundation for systematic device engineering.
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반도체대학 (반도체·전자공학부)
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