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Ultraflexible two-dimensional Janus heterostructure superlattice: a novel intrinsic wrinkled structure

机译:超柔性二维Janus异质结构超晶格:一种新型的本征皱纹结构

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The recently reported two-dimensional Janus transition metal dichalcogenide materials present promising applications such as in transistors, photocatalysts, and thermoelectric nanodevices. In this work, using molecular dynamics simulations, the self-assembled in-plane MoSSe/WSSe heterostructure superlattice is predicted with a natural sinusoidal structure constructed by an asymmetric interface. Such a sinusoidal structure shows extraordinary mechanical behavior where the fracture strain can be enhanced up to 4.7 times than that of the symmetrical interface. Besides, the deformational structure of all these MoSSe/WSSe heterostructure superlattice are in accordance with the Fourier function curve; the fracture strength and fracture strain also demonstrate pronounced size dependence. Our investigations proposed an ultrastretchable assembled heterostructure superlattice and provided a desirable strategy to tune the mechanical properties of such an in-plane two-dimensional heterostructure.
机译:最近报道的二维雅过渡金属dichalcogenide材料在晶体管、应用前景等催化剂和热电nanodevices。在这个工作中,使用分子动力学模拟,自组装平面MoSSe / WSSe异质结构超晶格预测与自然正弦结构由非对称界面。正弦结构显示了非凡的力学行为的断裂应变能增强的4.7倍对称的接口。所有这些结构MoSSe / WSSe异质结构超晶格是按照傅里叶函数曲线;断裂应变大小也展示明显依赖。ultrastretchable组装异质结构超晶格和提供了一个理想的策略优化的机械性能平面二维异质结构。

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