Gao Zhiqiang, Wei Tian-Ran, Deng Tingting, Qiu Pengfei, Xu Wei, Wang Yuecun, Chen Lidong, Shi Xun
State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, 200050, China.
School of Physical Science and Technology, ShanghaiTech University, Shanghai, 201210, China.
Nat Commun. 2022 Dec 5;13(1):7491. doi: 10.1038/s41467-022-35229-x.
Inorganic semiconductors exhibit multifarious physical properties, but they are prevailingly brittle, impeding their application in flexible and hetero-shaped electronics. The exceptional plasticity discovered in InSe crystal indicates the existence of abundant plastically deformable two-dimensional van der Waals (2D vdW) materials, but the conventional trial-and-error method is too time-consuming and costly. Here we report on the discovery of tens of potential 2D chalcogenide crystals with plastic deformability using a nearly automated and efficient high-throughput screening methodology. Seven candidates e.g., famous MoS, GaSe, and SnSe 2D materials are carefully verified to show largely anisotropic plastic deformations, which are contributed by both interlayer and cross-layer slips involving continuous breaking and reconstruction of chemical interactions. The plasticity becomes a new facet of 2D materials for deformable or flexible electronics.
无机半导体展现出多种多样的物理特性,但其普遍脆性大,这阻碍了它们在柔性及异形电子产品中的应用。在硒化铟晶体中发现的卓越可塑性表明存在大量可塑性变形的二维范德华(2D vdW)材料,但传统的试错法既耗时又昂贵。在此,我们报告使用一种近乎自动化且高效的高通量筛选方法发现了数十种具有塑性变形能力的潜在二维硫族化物晶体。仔细验证了七种候选材料,例如著名的二维材料二硫化钼、硒化镓和硒化锡,它们表现出很大程度的各向异性塑性变形,这是由涉及化学相互作用的连续断裂和重建的层间及跨层滑移共同导致的。这种可塑性成为二维材料用于可变形或柔性电子产品的一个新特性。