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Pseudo-one-dimensional ribbon chain cluster realized under high pressure in 1T−VSe2

T. Hara1, N. Katayama1,*, S. Kitou2, K. Kojima3, S. Kawaguchi4, and H. Sawa1

  • *Contact author: katayama.naoyuki.m5@f.mail.nagoya-u.ac.jp

Phys. Rev. B 110, L020103 – Published 26 July, 2024

DOI: https://doi.org/10.1103/PhysRevB.110.L020103

Abstract

We present a high-pressure single-crystal x-ray structure analysis of two-dimensional layered 1T−VSe2, which is known to undergo an incommensurate charge density wave transition at 110 K at ambient pressure. When pressure is applied to 1T−VSe2 at 150 K, a structural phase transition appears at about 8 GPa. The structural analysis of x-ray diffraction data obtained from a single crystal sample, with the correct corrections for the use of a diamond anvil cell and taking into account the effects of multiple domains, using only the superlattice peaks, reveals the appearance of “ribbon chain” type vanadium clusters at a high-pressure region. The formation of Se-Se bonds under high pressure and the associated unexpected charge injection into vanadium are largely responsible for the formation of ribbon-chain clusters. We discuss the possibility that such interanion bond formation occurs universally in the high-pressure phase of transition metal diserenides.

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