材料科学
各向异性
拉曼光谱
相变
之字形的
Crystal(编程语言)
八面体
过渡金属
相(物质)
亚稳态
凝聚态物理
晶体结构
结晶学
化学物理
光学
几何学
化学
物理
催化作用
有机化学
生物化学
计算机科学
数学
程序设计语言
作者
Gwang‐Hyeon Nam,Qiyuan He,Xingzhi Wang,Yifu Yu,Junze Chen,Kang Zhang,Zhenzhong Yang,Dianyi Hu,Zhuangchai Lai,Bing Li,Qihua Xiong,Qing Zhang,Lin Gu,Hua Zhang
标识
DOI:10.1002/adma.201807764
摘要
Abstract Crystal phases play a key role in determining the physicochemical properties of a material. To date, many phases of transition metal dichalcogenides have been discovered, such as octahedral (1T), distorted octahedral (1T′), and trigonal prismatic (2H) phases. Among these, the 1T′ phase offers unique properties and advantages in various applications. Moreover, the 1T′ phase consists of unique zigzag chains of the transition metals, giving rise to interesting in‐plane anisotropic properties. Herein, the in‐plane optical and electrical anisotropies of metastable 1T′‐MoS2 layers are investigated by the angle‐resolved Raman spectroscopy and electrical measurements, respectively. The deconvolution of J1 and J2 peaks in the angle‐resolved Raman spectra is a key characteristic of high‐quality 1T′‐MoS2 crystal. Moreover, it is found that its electrocatalytic performance may be affected by the crystal orientation of anisotropic material due to the anisotropic charge transport.
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