Zhang Wei, Cui Yang, Zhu Chuanhui, Huang Biyi, Yan Shubin
College of Electrical Engineering, Zhejiang University of Water Resources and Electronic Power, Hangzhou 310018, People's Republic of China.
Phys Chem Chem Phys. 2021 May 5;23(17):10551-10559. doi: 10.1039/d0cp06287a.
As an unusual mechanical response, the ferroelastic phenomenon in two-dimensional materials has been reported both experimentally and theoretically in recent years. Here, we present the theoretical findings of ferroelastic switching in monolayer PdS2. We demonstrate four types of PdS2 allotropes, showing excellent ferroelasticity with low ferroelastic barriers and strong switching signals. The ferroelastic transitions in monolayer PdS2 include the lattice rotation in penta-α PdS2, the transformation between penta-α PdS2 and penta-β PdS2, the transformation between penta-α PdS2 and penta-γ PdS2, the transformation between penta-β PdS2 and penta-γ PdS2, the transformation between penta-α PdS2 and δ PdS2, and the lattice rotation in δ PdS2. The ferroelastic transitions between these four allotropes have revealed the flexible ferroelasticity in monolayer PdS2. Specifically, the flexible switching in PdS2 allotropes may efficiently control the anisotropic transport of electrons. Thus, the presence of these outstanding mechanical properties endows PdS2 with great potential for applications in next-generation shape memory devices.
作为一种非同寻常的力学响应,二维材料中的铁弹性现象近年来在实验和理论方面均有报道。在此,我们展示了单层PdS2中铁弹性开关的理论研究结果。我们证明了四种类型的PdS2同素异形体,它们表现出优异的铁弹性,具有低铁弹性势垒和强开关信号。单层PdS2中的铁弹性转变包括五重-α PdS2中的晶格旋转、五重-α PdS2与五重-β PdS2之间的转变、五重-α PdS2与五重-γ PdS2之间的转变、五重-β PdS2与五重-γ PdS2之间的转变、五重-α PdS2与δ PdS2之间的转变以及δ PdS2中的晶格旋转。这四种同素异形体之间的铁弹性转变揭示了单层PdS2中灵活的铁弹性。具体而言,PdS2同素异形体中的灵活开关可能有效地控制电子的各向异性输运。因此,这些优异力学性能的存在赋予了PdS2在下一代形状记忆器件中的巨大应用潜力。