Achieving a superlubricating ohmic sliding electrical contact via a 2D heterointerface: a computational investigation

Simultaneously achieving low friction and fine electrical conductance of sliding electrical contacts is a crucial factor but a great challenge for designing high-performance microscale and nanoscale functional devices. Through atomistic simulations, we propose an effective design strategy to obtain both low friction and high conductivity in sliding electrical contacts. By constructing graphene(Gr)/MoS2 two-dimensional (2D) heterojunctions between sliding Cu surfaces, superlubricity can be achieved with a remarkably lowered sliding energy barrier as compared to that of the homogeneous MoS2 lubricated Cu contact. Moreover, by introducing vacancy defects into MoS2 and substituting Cu with active metal Ti, the Schottky and tunneling barriers can be substantially suppressed without losing the superlubricious properties of the tribointerface. Consequently, a high conductivity ohmic contact with low sliding friction could be realized in our proposed Ti-MoS1.5-Gr-Ti system, which provides a potential strategy for tackling the well-known dilemma for high performance sliding electrical contacts.

相关文章

  • Tribological Properties of Polydopamine-Modified Ag as Lubricant Oil Additives
    [Zhang, Yanxin, Cheng, Jun, Lu, Changfeng, Chen, Hao, Xie, Guoxin, Zhang, Lin, Luo, Jianbin]
  • Genesis of Superlow Friction in Strengthening Si-DLC/PLC Nanostructured Multilayer Films for Robust Superlubricity at Ultrahigh Contact Stress
    [Deng, Wenli, Wang, Yinhui, Yu, Qingyuan, Chen, Xinchun, Huang, Peng, Yu, Xi, Qi, Wei, Li, Xuewu, Zhang, Chenhui, Luo, Jianbin]
  • Non-contact friction energy dissipation via hysteretic behavior on a graphite surface
    [Wang, Chong, Liu, Huixian, Wang, Jiangcai, Han, Yishu, Sun, Zejun, Xu, Haowen, Liu, Huan, Liu, Dameng, Luo, Jianbin]
  • 成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    成果名称:低表面能涂层

    合作方式:技术开发

    联 系 人:周老师

    联系电话:13321314106

    润滑集