Thermal wetting 현상이 탄소나노튜브-금속박막 계면의응착력에 미치는 영향에 관한 분자 시뮬레이션 연구

A Molecular Simulation on the Adhesion Control of Metal Thin Film-Carbon Nanotube Interface based on Thermal Wetting

초록

This study presents a molecular simulation of adhesion control between carbon nanotube (CNT) and Ag thin film deposited on silicon substrate. Rough and flat Ag thin film models were prepared to investigate the effect of surface roughness on adhesion force. Heat treatment was applied to the models to modify the adhesion characteristics of the Ag/CNT interface based on thermal wetting. Simulation results showed that the heat treatment altered the Ag thin film morphology by thermal wetting, causing an increase in contact area of Ag/CNT interface and the adhesion force for both the flat and rough models changed. Despite the increase in contact area, the adhesion force of flat Ag/CNT interface decreased after the heat treatment because of plastic deformation of the Ag thin film. The result suggests that internal stress of the CNT induced by the substrate deformation contributes in reduction of adhesion. Contrarily, heat treatment to the rough model increases adhesion force because of the expanded contact area. The contact area is speculated to be more influential to the adhesion force rather than the internal stress of the CNT on the rough Ag thin film, because the CNT on the rough model contains internal stress regardless of the heat treatment. Therefore, as demonstrated by simulation results, the heat treatment can prevent delamination or wear of CNT coating on a rough metallic substrate by thermal wetting phenomena.

키워드

점착; 접촉 면적; 열처리; 분자 시뮬레이션; 표면 거칠기; Adhesion; Contact area; Heat treatment; Molecular simulation; Surface roughness
제목
Thermal wetting 현상이 탄소나노튜브-금속박막 계면의응착력에 미치는 영향에 관한 분자 시뮬레이션 연구
제목 (타언어)
A Molecular Simulation on the Adhesion Control of Metal Thin Film-Carbon Nanotube Interface based on Thermal Wetting
저자
이상훈; 김현준
발행일
2023-02
유형
Y
저널명
한국트라이볼로지학회지
권
39
호
1
페이지
8 ~ 12