Liang Jing, Yang Dongyang, Xiao Yunhuan, Chen Sean, Dadap Jerry I, Rottler Joerg, Ye Ziliang
Department of Physics and Astronomy, The University of British Columbia, Vancouver, BC V6T 1Z1, Canada.
Quantum Matter Institute, The University of British Columbia, Vancouver, BC V6T 1Z4, Canada.
Nano Lett. 2023 Aug 9;23(15):7228-7235. doi: 10.1021/acs.nanolett.3c01487. Epub 2023 Jun 26.
Slip avalanches are ubiquitous phenomena occurring in three-dimensional materials under shear strain, and their study contributes immensely to our understanding of plastic deformation, fragmentation, and earthquakes. So far, little is known about the role of shear strain in two-dimensional (2D) materials. Here we show some evidence of 2D slip avalanches in exfoliated rhombohedral MoS, triggered by shear strain near the threshold level. Utilizing interfacial polarization in 3R-MoS, we directly probe the stacking order in multilayer flakes and discover a wide variety of polarization domains with sizes following a power-law distribution. These findings suggest that slip avalanches can occur during the exfoliation of 2D materials, and the stacking orders can be changed via shear strain. Our observation has far-reaching implications for the development of new materials and technologies, where precise control over the atomic structure of these materials is essential for optimizing their properties as well as for our understanding of fundamental physical phenomena.
滑移雪崩是在剪切应变作用下三维材料中普遍存在的现象,对其研究极大地有助于我们理解塑性变形、破碎和地震。到目前为止,关于剪切应变在二维(2D)材料中的作用知之甚少。在此,我们展示了在剥离的菱面体二硫化钼中二维滑移雪崩的一些证据,其由接近阈值水平的剪切应变引发。利用3R-二硫化钼中的界面极化,我们直接探测多层薄片中的堆叠顺序,并发现了各种尺寸遵循幂律分布的极化域。这些发现表明,二维材料在剥离过程中可能发生滑移雪崩,并且堆叠顺序可以通过剪切应变改变。我们的观察结果对新材料和新技术的发展具有深远意义,在这些领域中,精确控制这些材料的原子结构对于优化其性能以及我们对基本物理现象的理解至关重要。