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Quasi-unipolar pentacene films embedded with fullerene for non-volatile organic transistor memories

Authors
Lee, JuheeLee, SungpyoLee, Moo HyungKang, Moon Sung
Issue Date
9-Feb-2015
Publisher
AMER INST PHYSICS
Citation
APPLIED PHYSICS LETTERS, v.106, no.6
Journal Title
APPLIED PHYSICS LETTERS
Volume
106
Number
6
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/8798
DOI
10.1063/1.4908187
ISSN
0003-6951
Abstract
Quasi-unipolar non-volatile organic transistor memory (NOTM) can combine the best characteristics of conventional unipolar and ambipolar NOTMs and, as a result, exhibit improved device performance. Unipolar NOTMs typically exhibit a large signal ratio between the programmed and erased current signals but also require a large voltage to program and erase the memory cells. Meanwhile, an ambipolar NOTM can be programmed and erased at lower voltages, but the resulting signal ratio is small. By embedding a discontinuous n-type fullerene layer within a p-type pentacene film, quasi-unipolar NOTMs are fabricated, of which the signal storage utilizes both electrons and holes while the electrical signal relies on only hole conduction. These devices exhibit superior memory performance relative to both pristine unipolar pentacene devices and ambipolar fullerene/pentacene bilayer devices. The quasi-unipolar NOTM exhibited a larger signal ratio between the programmed and erased states while also reducing the voltage required to program and erase a memory cell. This simple approach should be readily applicable for various combinations of advanced organic semiconductors that have been recently developed and thereby should make a significant impact on organic memory research. (C) 2015 AIP Publishing LLC.
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