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KCe(PO)₄的相变、振动和电子性质:实验与理论相结合的研究

Phase Transformation, Vibrational and Electronic Properties of KCe(PO): A Combined Experimental and Theoretical Study.

作者信息

Bevara Samatha, Mishra Karuna Kara, Patwe Sadeque Jahedkhan, Ravindran T R, Gupta Mayanak K, Mittal Ranjan, Krishna P Siva Ram, Sinha Anil K, Achary S Nagabhusan, Tyagi Avesh Kumar

机构信息

Homi Bhabha National Institute , Anushakti Nagar, Mumbai 400094, India.

Condensed Matter Physics Division, Indira Gandhi Centre for Atomic Research , Kalpakkam 603102, India.

出版信息

Inorg Chem. 2017 Mar 20;56(6):3335-3348. doi: 10.1021/acs.inorgchem.6b02870. Epub 2017 Mar 6.

Abstract

Herein we report the high-temperature crystal chemistry of KCe(PO) as observed from a joint in situ variable-temperature X-ray diffraction (XRD) and Raman spectroscopy as well as ab initio density functional theory (DFT) calculations. These studies revealed that the ambient-temperature monoclinic (P2/n) phase reversibly transforms to a tetragonal (I4/amd) structure at higher temperature. Also, from the experimental and theoretical calculations, a possible existence of an orthorhombic (Imma) structure with almost zero orthorhombicity is predicted which is closely related to tetragonal KCe(PO). The high-temperature tetragonal phase reverts back to ambient monoclinic phase at much lower temperature in the cooling cycle compared to that observed at the heating cycle. XRD studies revealed the transition is accompanied by volume expansion of about 14.4%. The lower packing density of the high-temperature phase is reflected in its significantly lower thermal expansion coefficient (α = 3.83 × 10 K) compared to that in ambient monoclinic phase (α = 41.30 × 10 K). The coexistences of low- and high-temperature phases, large volume discontinuity in transition, and large hysteresis of transition temperature in heating and cooling cycles, as well as drastically different structural arrangement are in accordance with the first-order reconstructive nature of the transition. Temperature-dependent Raman spectra indicate significant changes around 783 K attributable to the phase transition. In situ low-temperature XRD, neutron diffraction, and Raman spectroscopic studies revealed no structural transition below ambient temperature. Raman mode frequencies, temperature coefficients, and reduced temperature coefficients for both monoclinic and tetragonal phases of KCe(PO) have been obtained. Several lattice and external modes of rigid PO units are found to be strongly anharmonic. The observed phase transition and structures as well as vibrational properties of both ambient- and high-temperature phases were complimented by DFT calculations. The optical absorption studies on monoclinic phase indicated a band gap of about 2.46 eV. The electronic structure calculations on ambient-temperature monoclinic and high-temperature phases were also carried out.

摘要

在此,我们报告了通过原位变温X射线衍射(XRD)和拉曼光谱以及从头算密度泛函理论(DFT)计算所观察到的KCe(PO)的高温晶体化学。这些研究表明,室温下的单斜晶系(P2/n)相在较高温度下可逆地转变为四方晶系(I4/amd)结构。此外,通过实验和理论计算,预测可能存在一种正交性几乎为零的正交晶系(Imma)结构,它与四方晶系的KCe(PO)密切相关。与加热循环相比,高温四方相在冷却循环中在低得多的温度下恢复到室温单斜相。XRD研究表明,该转变伴随着约14.4%的体积膨胀。高温相较低的堆积密度反映在其热膨胀系数(α = 3.83 × 10 K)明显低于室温单斜相(α = 41.30 × 10 K)。低温相和高温相的共存以及转变中的大体积不连续性、加热和冷却循环中转变温度的大滞后以及截然不同的结构排列都符合该转变的一级重构性质。温度依赖的拉曼光谱表明,在783 K左右由于相变而有显著变化。原位低温XRD、中子衍射和拉曼光谱研究表明,在室温以下没有结构转变。已获得KCe(PO)单斜相和四方相的拉曼模式频率、温度系数和约化温度系数。发现刚性PO单元的几个晶格和外部模式具有很强的非谐性。所观察到的相变、结构以及室温相和高温相的振动性质都得到了DFT计算的补充。对单斜相的光吸收研究表明带隙约为2.46 eV。还对室温单斜相和高温相进行了电子结构计算。

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