Moiré superlattice effects on interfacial mechanical behavior: A concise review

IF 24.5 Q1 CHEMISTRY, PHYSICAL
Weidong Yan, Jiangtao Liu, Wengen Ouyang, Ze Liu
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Abstract

The moiré superlattice, arising from the interface of mismatched single crystals, intricately regulates the physical and mechanical properties of materials, giving rise to phenomena such as superconductivity and superlubricity. This study delves into the profound impact of moiré superlattices on the interfacial mechanical behavior of van der Waals (vdW) layered materials, with a particular focus on tribological properties. A comprehensive review of continuum modeling approaches for vdW layered materials is presented, accentuating the incorporation of moiré superlattice effects in theoretical models to unravel their distinctive interfacial frictional behavior and thermodynamic properties. The exploration of moiré superlattices has significantly advanced our fundamental understanding of interface phenomena in vdW layered materials. This progress provides crucial theoretical insights that can inform the design of multifunctional devices based on the unique properties of twisted layered materials.

Abstract Image

界面机械行为的摩尔超晶格效应:简明综述
摩尔纹超格产生于不匹配单晶体的界面,它错综复杂地调节着材料的物理和机械特性,从而产生了超导和超润滑等现象。本研究深入探讨了摩尔超晶格对范德华(vdW)层状材料界面机械行为的深远影响,尤其关注摩擦学特性。报告全面回顾了范德华层状材料的连续建模方法,强调将摩尔纹超格效应纳入理论模型,以揭示其独特的界面摩擦行为和热力学特性。对摩尔纹超格的探索极大地推动了我们对 vdW 层状材料界面现象的基本理解。这一进展提供了重要的理论见解,可为设计基于扭曲层状材料独特性质的多功能设备提供依据。
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