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Characterization of the pressure-induced phase transition of metallization for MoTe2 under hydrostatic and non-hydrostatic conditions

机译:静水和非静水条件下MoTe2的压力诱导金属化相变的表征

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This study reported a pressure-induced metallization for molybdenum tellurium under different pressure environments up to ~25.9 GPa through a series of experiments and first-principles theoretical calculations. This metallization was closely related to the gradual closure of bandgap rather than the structural phase transition. Under the non-hydrostatic environment, the metallization point was ~12.5 GPa and irreversible, while it occurred at a higher pressure of ~14.9 GPa and was reversible under the hydrostatic environment. We ascribed these discrepancies to the strong deviatoric stress, which reinforced the Te-Te interactions and caused the permanent plastic deformation of the interlayer spacing.
机译:该研究通过一系列实验和第一性原理计算,报道了在高达25.9 GPa的不同压力环境下,钼诱导的压力金属化。这种金属化与带隙的逐渐闭合而不是结构相变密切相关。在非静水环境下,金属化点为〜12.5 GPa且不可逆,而在较高压力〜14.9 GPa下发生,且在静水环境下可逆。我们将这些差异归因于强烈的偏应力,从而增强了Te-Te相互作用并引起了层间间距的永久塑性变形。

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