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平面外变形确定二硫化钒(VS)片材的力学性能

Out-of-Plane Deformations Determined Mechanics of Vanadium Disulfide (VS) Sheets.

作者信息

Wang Guorui, Zhang Zhepeng, Wang Yanlei, Gao Enlai, Jia Xiangzheng, Dai Zhaohe, Weng Chuanxin, Liu Luqi, Zhang Yanfeng, Zhang Zhong

机构信息

CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing 100190, P. R. China.

Department of Mechanical and Industrial Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario M5S 3G8, Canada.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 20;13(2):3040-3050. doi: 10.1021/acsami.0c19835. Epub 2021 Jan 5.

Abstract

The rapid development of two-dimensional (2D) materials has significantly broadened the scope of 2D science in both fundamental scientific interests and emerging technological applications, wherein the mechanical properties play an indispensably key role. Nevertheless, particularly challenging is the ultrathin nature of 2D materials that makes their manipulations and characterizations considerably difficult. Herein, thanks to the excellent flexibility of vanadium disulfide (VS) sheets, their susceptibility to out-of-plane deformation is exploited to realize the controllable loading and enable the accurate measurements of mechanical properties. In particular, the Young's modulus is estimated to be 44.4 ± 3.5 GPa, approaching the lower limit for 2D transition metal dichalcogenides (TMDs). We further report the first measurement of thickness-dependent bending rigidity of VS, which deviates from the prediction of the classical continuum mechanics theory. Additionally, a deeper understanding of the mechanics within two dimensions also facilitates the modulation of strain-coupled physics at the nanoscale. Our Raman measurements showed the Grüneisen parameters for VS were determined for the first time to be γ ≈ 0.83 and γ ≈ 0.32.

摘要

二维(2D)材料的迅速发展极大地拓宽了二维科学在基础科学研究和新兴技术应用方面的范围,其中力学性能起着不可或缺的关键作用。然而,二维材料的超薄特性使其操纵和表征极具挑战性。在此,得益于二硫化钒(VS)片材出色的柔韧性,利用其对平面外变形的敏感性实现可控加载,并能够精确测量力学性能。特别是,杨氏模量估计为44.4±3.5 GPa,接近二维过渡金属硫族化合物(TMDs)的下限。我们进一步报告了首次对VS厚度依赖性弯曲刚度的测量,其偏离了经典连续介质力学理论的预测。此外,对二维力学的更深入理解也有助于在纳米尺度上调制应变耦合物理。我们的拉曼测量结果首次表明,VS的格鲁尼森参数确定为γ≈0.83和γ≈0.32。

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