Tan Sherman Jun Rong, Sarkar Soumya, Zhao Xiaoxu, Luo Xin, Luo Yong Zheng, Poh Sock Mui, Abdelwahab Ibrahim, Zhou Wu, Venkatesan Thirumalai, Chen Wei, Quek Su Ying, Loh Kian Ping
Department of Chemistry , National University of Singapore , Singapore 117543.
NUS Graduate School for Integrative Sciences and Engineering , National University of Singapore, Center for Life Sciences , #05-01, 28 Medical Drive , Singapore 117456.
ACS Nano. 2018 May 22;12(5):5051-5058. doi: 10.1021/acsnano.8b02649. Epub 2018 May 4.
Polymorph engineering of 2H-MoS, which can be achieved by alkali metal intercalation to obtain either the mixed 2H/1T' phases or a homogeneous 1T' phase, has received wide interest recently, since this serves as an effective route to tune the electrical and catalytic properties of MoS. As opposed to an idealized single crystal-to-single crystal phase conversion, the 2H to 1T' phase conversion results in crystal domain size reduction as well as strained lattices, although how these develop with composition is not well understood. Herein, the evolution of the phonon modes in Li-intercalated 1T'-MoS (Li MoS) are investigated as a function of different 1T'-2H compositions. We observed that the strain evolution in the mixed phases is revealed by the softening of four Raman modes, B ( J), A ( J), E, and A, with increasing 1T' phase composition. Additionally, the first-order temperature coefficients of the 1T' phonon mode vary linearly with increasing 1T' composition, which is explained by increased electron-phonon and strain-phonon coupling.
通过碱金属插层来实现2H-MoS₂的多晶型工程,从而获得混合的2H/1T'相或均匀的1T'相,这一方法近来受到了广泛关注,因为它是调节MoS₂电学和催化性能的有效途径。与理想化的单晶到单晶的相转变不同,2H到1T'的相转变会导致晶畴尺寸减小以及晶格应变,尽管目前对于这些变化如何随组成而发展还不太清楚。在此,研究了锂插层的1T'-MoS₂(LiₓMoS₂)中声子模式随不同1T'-2H组成的演变。我们观察到,随着1T'相组成的增加,四个拉曼模式B₁(E₂g)、A₁(A₁g)、E₂(E₂g)和A₁(A₁g)的软化揭示了混合相中的应变演变。此外,1T'声子模式的一阶温度系数随1T'组成的增加呈线性变化,这可以通过增强的电子-声子和应变-声子耦合来解释。