Effects of Ti-based interposer layer on graphene/carbon nanotube nano-contact resistance

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5
Citations

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6

초록

We demonstrate that the carbon nanotube (CNT)-graphene contact resistance can be improved by the introduction of an interposer layer and its surface treatment in order to improve the interfacing between vertical CNT interconnects and horizontal graphene lines. To this end, a method to measure the rear-end contact resistance over a nano-sized area without the need for a separate test structure was developed. Graphene-CNT exhibits a high contact resistance of 11. 66 MΩ/nm2 due to weak van der Waals force coupling. This contact resistance can be reduced via addition of a contact layer composed of Ti (resistance of ~1.23 MΩ/nm2) or Cu (~1.65 MΩ/nm2) between graphene and the CNT. In particular, the contact resistance between the vertical CNT interconnect and the horizontal graphene line is greatly improved when a Ti interlayer is applied because Ti exhibits excellent wettability with carbon, which leads to strong Ti–C bonding that affords a Schottky-barrier-free ohmic contact. Furthermore, the contact resistance can be improved by removing Ti–O bonds through a surface treatment. © 2019

키워드

5-nm technology node; Carbon semiconductor; CNT interconnect; Graphene line; Nano-area contact resistance; Contact resistance; Graphene; Ohmic contacts; Schottky barrier diodes; Surface treatment; Van der Waals forces; CNT interconnect; Contact layers; Nano sized; Schottky barriers; Technology nodes; Test structure; Ti interlayers; Ti-based; Carbon nanotubes
제목
Effects of Ti-based interposer layer on graphene/carbon nanotube nano-contact resistance
저자
Choi E.; Gao Y.; Cui Y.; Pyo S.G.
DOI
10.1016/j.apsusc.2019.144881
발행일
2020-04-15
유형
Article
저널명
Applied Surface Science
권
509