错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Twisted-layer boron nitride ceramic with high deformability and strength

  • Yingju Wu,
  • Yang Zhang,
  • Xiaoyu Wang,
  • Wentao Hu,
  • Song Zhao,
  • Timothy Officer,
  • Kun Luo,
  • Ke Tong,
  • Congcong Du,
  • Liqiang Zhang,
  • Baozhong Li,
  • Zewen Zhuge,
  • Zitai Liang,
  • Mengdong Ma,
  • Anmin Nie,
  • Dongli Yu,
  • Julong He,
  • Zhongyuan Liu,
  • Bo Xu,
  • Yanbin Wang,
  • Zhisheng Zhao,
  • Yongjun Tian

摘要

Moiré superlattices formed by twisted stacking in van der Waals materials have emerged as a new platform for exploring the physics of strongly correlated materials and other emergent phenomena15. However, there remains a lack of research on the mechanical properties of twisted-layer van der Waals materials, owing to a lack of suitable strategies for making three-dimensional bulk materials. Here we report the successful synthesis of a polycrystalline boron nitride bulk ceramic with high room-temperature deformability and strength. This ceramic, synthesized from an onion-like boron nitride nanoprecursor with conventional spark plasma sintering and hot-pressing sintering, consists of interlocked laminated nanoplates in which parallel laminae are stacked with varying twist angles. The compressive strain of this bulk ceramic can reach 14% before fracture, about one order of magnitude higher compared with traditional ceramics (less than 1% in general), whereas the compressive strength is about six times that of ordinary hexagonal boron nitride layered ceramics. The exceptional mechanical properties are due to a combination of the elevated intrinsic deformability of the twisted layering in the nanoplates and the three-dimensional interlocked architecture that restricts deformation from propagating across individual nanoplates. The advent of this twisted-layer boron nitride bulk ceramic opens a gate to the fabrication of highly deformable bulk ceramics.