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少层独立式MoSe₂的厚度依赖性弹性软化

Thickness-Dependent Elastic Softening of Few-Layer Free-Standing MoSe.

作者信息

Babacic Visnja, Saleta Reig David, Varghese Sebin, Vasileiadis Thomas, Coy Emerson, Tielrooij Klaas-Jan, Graczykowski Bartlomiej

机构信息

Faculty of Physics, Adam Mickiewicz University, Uniwersytetu Poznanskiego 2, Poznan, 61-614, Poland.

Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and BIST, Campus UAB, Bellaterra, Barcelona, 08193, Spain.

出版信息

Adv Mater. 2021 Jun;33(23):e2008614. doi: 10.1002/adma.202008614. Epub 2021 May 3.

Abstract

Few-layer van der Waals (vdW) materials have been extensively investigated in terms of their exceptional electronic, optoelectronic, optical, and thermal properties. Simultaneously, a complete evaluation of their mechanical properties remains an undeniable challenge due to the small lateral sizes of samples and the limitations of experimental tools. In particular, there is no systematic experimental study providing unambiguous evidence on whether the reduction of vdW thickness down to few layers results in elastic softening or stiffening with respect to the bulk. In this work, micro-Brillouin light scattering is employed to investigate the anisotropic elastic properties of single-crystal free-standing 2H-MoSe as a function of thickness, down to three molecular layers. The so-called elastic size effect, that is, significant and systematic elastic softening of the material with decreasing numbers of layers is reported. In addition, this approach allows for a complete mechanical examination of few-layer membranes, that is, their elasticity, residual stress, and thickness, which can be easily extended to other vdW materials. The presented results shed new light on the ongoing debate on the elastic size-effect and are relevant for performance and durability of implementation of vdW materials as resonators, optoelectronic, and thermoelectric devices.

摘要

少层范德华(vdW)材料因其卓越的电学、光电子学、光学和热学性质而受到广泛研究。同时,由于样品横向尺寸较小以及实验工具的局限性,对其力学性能进行全面评估仍然是一项不可忽视的挑战。特别是,目前尚无系统的实验研究能明确证明,将vdW厚度减小至几层相对于体材料而言会导致弹性软化还是硬化。在这项工作中,采用微布里渊光散射来研究独立单晶2H-MoSe₂的各向异性弹性性质随厚度的变化,直至三层分子层。研究报告了所谓的弹性尺寸效应,即随着层数减少,材料出现显著且系统性的弹性软化。此外,这种方法能够对少层膜进行全面的力学检测,即检测其弹性、残余应力和厚度,并且可以轻松扩展到其他vdW材料。所呈现的结果为正在进行的关于弹性尺寸效应的争论提供了新的线索,并且与vdW材料作为谐振器、光电器件和热电器件应用时的性能及耐久性相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2ee/11468464/8fb4cfe2a86d/ADMA-33-2008614-g004.jpg

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