The structural origin of extraordinary plasticity in polycrystalline semiconductors with low symmetry
收藏中国科学院兰州化学物理研究所科学数据中心2025-12-18 更新2026-01-10 收录
下载链接:
https://ggjsfwdata.licp.cn/dataDetails/5d585c166ce840c7b93d4fbabc04aeeb
下载链接
链接失效反馈官方服务:
资源简介:
Ductile polycrystals are usually metals with high- symmetry structures that provide multiple slip systems to coor
dinate the synergetic deformation of adjacent grains. However, while exceptional plasticity was recently discov
ered in a series of low- symmetry semiconductors, their deformation mechanism remains mysterious. Here, taking
monoclinic Ag4SSe as a case study, we show that the inherent high- symmetry anion sublattice with a quasi–body-
centered cubic (bcc) structure is embedded in the monoclinic matrix. This, coupled with the highly diffuse cations,
results in multiple slip systems and is responsible for the superior plasticity as normally unexpected in low-
symmetry structures. We observe typical slip systems conforming with those of the bcc structure by experiment.
This finding clarifies the deformation mechanism of Ag2S- based low- symmetry semiconductors and sheds light
on future exploration of ductile inorganic semiconductors.
提供机构:
中国科学院兰州化学物理研究所科学数据中心
创建时间:
2025-12-18



