各向异性
纳米压痕
材料科学
模数
垂直的
铌
凝聚态物理
杨氏模量
平面(几何)
原子力显微镜
复合材料
光学
纳米技术
物理
几何学
冶金
数学
作者
Yuanyuan Cui,Shuqi Li,Xiangping Zhang,Tingjun Wang,Xinyu Cao,Shaohua Yan,Xiao Zhang,Hechang Lei,Gang Tang,Jiawang Hong,Xueyun Wang
摘要
Two-dimensional niobium oxide diiodide (NbOI2) has recently attracted extensive attention due to its highly anisotropic band structures and rich physical characteristics in electronics and optoelectronics. Nevertheless, mechanical properties of NbOI2 have not been systematically investigated, which are critical parameters for applications. Here, we determine the directional dependence of Young's modulus of thin NbOI2 flakes by using an atomic force microscopy-based nanoindentation technique. We find that Young's moduli along two perpendicular in-plane crystalline axis, the c-axis and the a-axis, were 97.27 ± 2.12 and 51.51 ± 8.21 GPa, respectively. The anisotropic ratio is up to 1.89, which is a high anisotropy value in two-dimensional materials reported so far.
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