English

Commensurate stacking phase transitions in an intercalated transition metal dichalcogenide

Materials Science 2021-12-16 v1 Superconductivity

Abstract

Intercalation and stacking order modulation are two active ways in manipulating the interlayer interaction of transition metal dichalcogenides (TMDCs), which lead to a variety of emergent phases and allow for engineering material properties. Herein, the growth of Pb intercalated TMDCs--Pb(Ta1+x_{1+x}Se2_2)2_2, the first 124-phase, is reported. Pb(Ta1+x_{1+x}Se2_2)2_2 exhibits a unique two-step first-order structural phase transition at around 230 K. The transitions are solely associated with the stacking degree of freedom, evolving from a high temperature phase with ABC stacking and symmetry R3mR3m to an intermediate phase with AB stacking and P3m1P3m1, and finally to a low temperature phase with again symmetry R3mR3m, but with ACB stacking. Each step involves a rigid slide of building blocks by a vector [1/3, 2/3, 0]. Intriguingly, gigantic lattice contractions occur at the transitions on warming. At low temperature, bulk superconductivity with TcT_\textrm{c}\approx 1.8 K is observed. The underlying physics of the structural phase transitions are discussed from first-principle calculations. The symmetry analysis reveals topological nodal lines in the band structure. Our results demonstrate the possibility to realize higher order metal intercalated phases of TMDCs, advance our knowledge of polymorphic transitions and may inspire stacking order engineering in TMDCs and beyond.

Keywords

Cite

@article{arxiv.2112.08248,
  title  = {Commensurate stacking phase transitions in an intercalated transition metal dichalcogenide},
  author = {Xiaohui Yang and Jin-Ke Bao and Zhefeng Lou and Peng Li and Chenxi Jiang and Jialu Wang and Tulai Sun and Yabin Liu and Wei Guo and Sitaram Ramakrishnan and Surya Rohith Kotla and Martin Tolkiehn and Carsten Paulmann and Guang-Han Cao and Yuefeng Nie and Wenbin Li and Yang Liu and Sander van Smaalen and Xiao Lin and Zhu-An Xu},
  journal= {arXiv preprint arXiv:2112.08248},
  year   = {2021}
}