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Graphene oxide gluing layer enabling macroscale tribology applications of pristine graphene

Mingi Choi Ivan V.Vlassiouk Won-Seok Kim Jeong Han Kim Anirudha V.Sumant Ji-Woong Jang Junho Suh Young-Jun Jang Songkil Kim

摩擦(英文)2025,Vol.13Issue(10):125-135,11.
摩擦(英文)2025,Vol.13Issue(10):125-135,11.DOI:10.26599/FRICT.2025.9441092

Graphene oxide gluing layer enabling macroscale tribology applications of pristine graphene

Graphene oxide gluing layer enabling macroscale tribology applications of pristine graphene

Mingi Choi 1Ivan V.Vlassiouk 2Won-Seok Kim 1Jeong Han Kim 1Anirudha V.Sumant 3Ji-Woong Jang 4Junho Suh 1Young-Jun Jang 5Songkil Kim1

作者信息

  • 1. School of Mechanical Engineering,Pusan National University,Busan 46241,Republic of Korea
  • 2. Center for Nanophase Materials Sciences,Oak Ridge National Laboratory,Oak Ridge,TN 37831,USA
  • 3. Center for Nanoscale Materials,Argonne National Laboratory,IL 60439,USA
  • 4. School of Mechanical Engineering,Pusan National University,Busan 46241,Republic of Korea||Department of Extreme Environmental Coatings,Extreme Materials Institute,Korea Institute of Materials Science,797,Changwon-daero,Seongsan-gu,Changwon-si,Gyeongsangnam-do 51508,Republic of Korea
  • 5. Department of Extreme Environmental Coatings,Extreme Materials Institute,Korea Institute of Materials Science,797,Changwon-daero,Seongsan-gu,Changwon-si,Gyeongsangnam-do 51508,Republic of Korea
  • 折叠

摘要

关键词

graphene oxide(GO)/pristine graphene(PG)/solid lubrication/transfer layer/macroscale tribology

Key words

graphene oxide(GO)/pristine graphene(PG)/solid lubrication/transfer layer/macroscale tribology

引用本文复制引用

Mingi Choi,Ivan V.Vlassiouk,Won-Seok Kim,Jeong Han Kim,Anirudha V.Sumant,Ji-Woong Jang,Junho Suh,Young-Jun Jang,Songkil Kim..Graphene oxide gluing layer enabling macroscale tribology applications of pristine graphene[J].摩擦(英文),2025,13(10):125-135,11.

基金项目

This research was supported by the National Research Foundation of Korea(NRF)Global Basic Research Laboratory grant funded by the Korea government(MSIT)(No.RS-2025-02216195)and by the Korea Institute of Energy Technology Evaluation and Planning(KETEP)grant funded by the Korea government(MOTIE)(No.20214000000140).Work performed at the Center for Nanoscale Materials,a U.S.Department of Energy Office of Science User Facility,was supported by the U.S.DOE,Office of Basic Energy Sciences,under Contract No.DE-AC02-06CH11357.It was partially supported by 2022 BK21 FOUR Program of Pusan National University.This research was conducted using the atomic force microscope,tribometer,and scanning electron microscope at the PNU Hybrid Innovative Manufacturing Engineering Center,which is the NFEC Core Facility supported by Korea Basic Science Institute. (NRF)

摩擦(英文)

2223-7690

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