First-principlesstudyonthemechanicalpropertiesofM2CT2(M=Ti,Zr,Hf;T=O,F,OH)MXenes

被引:1
作者
YuChang Lu [1 ,2 ]
CuiLan Ren [1 ,3 ]
ChangYing Wang [4 ]
YaRu Yin [1 ,2 ]
Han Han [1 ]
Wei Zhang [1 ,3 ]
Ping Huai [1 ,5 ,6 ]
机构
[1] Shanghai Institute of Applied Physics, Chinese Academy of Sciences
[2] University of Chinese Academy of Sciences
[3] Key Laboratory of Interfacial Physics and Technology,Chinese Academy of Sciences
[4] Changzhou Institute of Technology
[5] Center of Shanghai Light Source, Shanghai Advanced Research Institute
[6] School of Physical Science and Technology, Shanghai Tech University
关键词
MXenes; Mechanical properties; Vacancy; First-principles study;
D O I
暂无
中图分类号
O641.1 [化学键理论];
学科分类号
070304 ; 081704 ;
摘要
Two-dimensional(2D) transition metal carbides known as MXenes belong to a new branch of 2D material family, and their fundamental properties vary with their compositions and surface functionalizations. In this study,the structural and ideal mechanical properties of M2 C-type MXenes and their functionalized M2CT2 MXenes(M=Ti,Zr,Hf;T=O,F,OH) were systematically examined via first-principles methods. The stress–strain curves of the MXenes under homogenous biaxial and uniaxial tension are identified, and the fundamental quantities(e.g.,Young's modulus, in-plane stiffness, and Poisson's ratio)are addressed. With significantly higher strength and extended critical strains, the M2CO2 MXenes exhibit optimal flexibility when compared with that of M2C,M2CF2, and M2C(OH)2. Additionally, Hf2CT2 exhibits optimal tensile performance under uniaxial or biaxial tension when compared to that of Ti2CT2 and Zr2 CT2. The Young's modulus, in-plane stiffness, and Poisson's ratio of MXenes with different surface functionalization increase in a sequence corresponding to OH \ F \ O. Furthermore,the effects of vacancy on the mechanical properties of MXenes are further explored and indicate that vacancy can significantly weaken the tensile properties of MXenes that are considered. Moreover, vacancy also results in a certain anisotropy of stress along armchair and zigzag directions even under the biaxial tension condition.
引用
收藏
页码:62 / 73
页数:12
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