Bridged structures in ultrathin 2D materials for high toughness.

Kamalendu Paul, Chang Jun Zhang, Chi Hua Yu, Zhao Qin

研究成果: Article同行評審

2 引文 斯高帕斯(Scopus)

摘要

2D materials such as graphene, monolayer MoS2 and MXene are highly functional for their unique mechanical, thermal and electrical features and are considered building blocks for future ultrathin, flexible electronics. However, they can easily fracture from flaws or defects and thus it is important to increase their toughness in applications. Here, inspired by natural layered composites and architected 3D printed materials of high toughness, we introduce architected defects to the 2D materials and study their fracture in molecular dynamics simulations. We find that the length of the defects in the shape of parallel bridges is crucial to fracture toughness, as long bridges can significantly increase the toughness of graphene and MoS2 but decrease the toughness of MXene, while short bridges show opposite effects. This strategy can increase the toughness of 2D materials without introducing foreign materials or altering the chemistry of the materials, providing a general method to improve their mechanics.

原文English
文章編號104932
期刊Mechanics of Materials
191
DOIs
出版狀態Published - 2024 4月

All Science Journal Classification (ASJC) codes

  • 儀器
  • 一般材料科學
  • 材料力學

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