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April 23, 2024Nature Communications7 citationsOpen Access

Dualistic insulator states in 1T-TaS2 crystals

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YWYihao WangArgonne National LaboratoryZLZhi-Hao LiChinese Academy of SciencesXLXuan LuoXiamen University

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Abstract

Abstract While the monolayer sheet is well-established as a Mott-insulator with a finite energy gap, the insulating nature of bulk 1T-TaS 2 crystals remains ambiguous due to their varying dimensionalities and alterable interlayer coupling. In this study, we present a unique approach to unlock the intertwined two-dimensional Mott-insulator and three-dimensional band-insulator states in bulk 1T-TaS 2 crystals by structuring a laddering stack along the out-of-plane direction. Through modulating the interlayer coupling, the insulating nature can be switched between band-insulator and Mott-insulator mechanisms. Our findings demonstrate the duality of insulating nature in 1T-TaS 2 crystals. By manipulating the translational degree of freedom in layered crystals, our discovery presents a promising strategy for exploring fascinating physics, independent of their dimensionality, thereby offering a “three-dimensional” control for the era of slidetronics.

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Cite This Study

Wang et al. (2024) studied this question.

synapsesocial.com/papers/68e6de7cb6db64358765a844https://doi.org/10.1038/s41467-024-47728-0
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Also Consider

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  1. 1Interlayer coupling driven phase evolution in hyperbolic 1 <i>T</i> -TaS2 revealed by spectroscopic ellipsometry2026
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  4. 4Flat band physics in the charge-density wave state of $1T$-TaS$_2$2024
  5. 5Self-adaptive hetero-phase superlattices in TaS2 via layer-resolved 1T-to-1H transformations2026