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高压α-InSe 的实验和理论研究。

Experimental and Theoretical Studies on α-InSe at High Pressure.

机构信息

Centro de Tecnologías Físicas , Universitat Politècnica de València , 46022 Valencia , Spain.

Instituto de Diseño para la Fabricación y Producción Automatizada , Universitat Politècnica de València , 46022 Valencia , Spain.

出版信息

Inorg Chem. 2018 Jul 16;57(14):8241-8252. doi: 10.1021/acs.inorgchem.8b00778. Epub 2018 Jun 26.

Abstract

α(R)-InSe has been experimentally and theoretically studied under compression at room temperature by means of X-ray diffraction and Raman scattering measurements as well as by ab initio total-energy and lattice-dynamics calculations. Our study has confirmed the α ( R3 m) → β' ( C2/ m) → β ( R3̅ m) sequence of pressure-induced phase transitions and has allowed us to understand the mechanism of the monoclinic C2/ m to rhombohedral R3̅ m phase transition. The monoclinic C2/ m phase enhances its symmetry gradually until a complete transformation to the rhombohedral R3̅ m structure is attained above 10-12 GPa. The second-order character of this transition is the reason for the discordance in previous measurements. The comparison of Raman measurements and lattice-dynamics calculations has allowed us to tentatively assign most of the Raman-active modes of the three phases. The comparison of experimental results and simulations has helped to distinguish between the different phases of InSe and resolve current controversies.

摘要

α(R)-InSe 在室温下通过 X 射线衍射和拉曼散射测量以及从头算全能量和晶格动力学计算进行了实验和理论研究。我们的研究证实了α(R3m)→β'(C2/m)→β(R3̅m)的压力诱导相变序列,并使我们能够理解单斜 C2/m 到三方 R3̅m 相转变的机制。单斜 C2/m 相逐渐增强其对称性,直到在 10-12 GPa 以上完全转变为三方 R3̅m 结构。这种转变的二阶性质是先前测量不一致的原因。拉曼测量和晶格动力学计算的比较使我们能够暂时分配三个相的大多数拉曼活性模式。实验结果和模拟的比较有助于区分 InSe 的不同相并解决当前的争议。

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