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Two-dimensional membrane as elastic shell with proof on the folds revealed by three-dimensional atomic mapping

机译:二维膜作为弹性壳具有通过三维原子映射显示的褶皱的证明

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摘要

The great application potential for two-dimensional (2D) membranes (MoS2, WSe2, graphene and so on) aroused much effort to understand their fundamental mechanical properties. The out-of-plane bending rigidity is the key factor that controls the membrane morphology under external fields. Herein we provide an easy method to reconstruct the 3D structures of the folded edges of these 2D membranes on the atomic scale, using high-resolution (S)TEM images. After quantitative comparison with continuum mechanics shell model, it is verified that the bending behaviour of the studied 2D materials can be well explained by the linear elastic shell model. And the bending rigidities can thus be derived by fitting with our experimental results. Recall almost only theoretical approaches can access the bending properties of these 2D membranes before, now a new experimental method to measure the bending rigidity of such flexible and atomic thick 2D membranes is proposed.
机译:二维(2D)膜(MoS2,WSe2,石墨烯等)的巨大应用潜力引起了人们对了解其基本机械性能的巨大努力。平面外弯曲刚度是控制外场条件下膜形态的关键因素。本文中,我们提供了一种简单的方法,可以使用高分辨率(S)TEM图像在原子尺度上重建这些2D膜的折叠边缘的3D结构。通过与连续力学壳模型进行定量比较,验证了线性弹性壳模型可以很好地解释所研究的二维材料的弯曲行为。因此可以通过拟合我们的实验结果得出弯曲刚度。回顾几乎只有理论方法可以访问这些2D膜的弯曲特性,现在,提出了一种测量这种柔性原子厚2D膜的弯曲刚度的新实验方法。

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