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Modulation of the Dirac Point Voltage of Graphene by Ion-Gel Dielectrics and Its Application to Soft Electronic Devices

Authors
Kim, Un JeongKim, Tae GeunShim, YoungseonPark, YeonsangLee, Chang-WonKim, Tae-HoLee, Hyo SugChung, Dae-YoungKihm, JineunRoh, Young-GeunLee, JaesoongSon, HyungbinKim, SangsigHur, JaehyunHwang, Sung Woo
Issue Date
Jan-2015
Publisher
AMER CHEMICAL SOC
Keywords
ion-gel dielectric; graphene transistor; flexible devices
Citation
ACS NANO, v.9, no.1, pp.602 - 611
Journal Title
ACS NANO
Volume
9
Number
1
Start Page
602
End Page
611
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/10897
DOI
10.1021/nn505925u
ISSN
1936-0851
Abstract
We investigated systematic modulation of the Dirac point voltage of graphene transistors by changing the type of ionic liquid used as a main gate dielectric component. Ion gels were formed from ionic liquids and a non-triblock-copolymer-based binder involving UV irradiation. With a fixed cation (anion), the Dirac point voltage shifted to a higher voltage as the size of anion (cation) increased. Mechanisms for modulation of the Dirac point voltage of graphene transistors by designing ionic liquids were fully understood using molecular dynamics simulations, which excellently matched our experimental results. It was found that the ion sizes and molecular structures play an essential role in the modulation of the Dirac point voltage of the graphene. Through control of the position of their Dirac point voltages on the basis of our findings, complementary metal-oxide-semiconductor (CMOS)-like graphene-based inverters using two different ionic liquids worked perfectly even at a very low source voltage (V-DD = 1 mV), which was not possible for previous works. These results can be broadly applied in the development of low-power-consumption, flexible/stretchable, CMOS-like graphene-based electronic devices in the future.
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Engineering (화공생명배터리공학부)
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