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揭示高压下倍半氧化物中孤电子对的作用:β-SbO的压缩性

Unveiling the role of the lone electron pair in sesquioxides at high pressure: compressibility of β-SbO.

作者信息

Sans Juan Angel, Manjón Francisco Javier, Pereira André Luis de Jesus, Ruiz-Fuertes Javier, Popescu Catalin, Muñoz Alfonso, Rodríguez-Hernández Plácida, Pellicer-Porres Julio, Cuenca-Gotor Vanesa Paula, Contreras-García Julia, Ibañez Jordi, Monteseguro Virginia

机构信息

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

DCITIMAC, MALTA Consolider Team, Universidad de Cantabria, Santander 39005, Spain.

出版信息

Dalton Trans. 2021 Apr 28;50(16):5493-5505. doi: 10.1039/d1dt00268f.

Abstract

The structural, vibrational and electronic properties of the compressed β-Sb2O3 polymorph, a.k.a. mineral valentinite, have been investigated in a joint experimental and theoretical study up to 23 GPa. The compressibility of the lattice parameters, unit-cell volume and polyhedral unit volume as well as the behaviour of its Raman- and IR-active modes under compression have been interpreted on the basis of ab initio theoretical simulations. Valentinite shows an unusual compressibility up to 15 GPa with four different pressure ranges, whose critical pressures are 2, 4, and 10 GPa. The pressure dependence of the main structural units, the lack of soft phonons, and the electronic density charge topology address the changes at those critical pressures to isostructural phase transitions of degree higher than 2. In particular, the transitions at 2 and 4 GPa can be ascribed to the changes in the interaction between the stereochemically-active lone electron pairs of Sb atoms under compression. The changes observed above 10 GPa, characterized by a general softening of several Raman- and IR-active modes, point to a structural instability prior to the 1st-order transition occurring above 15 GPa. Above this pressure, a tentative new high-pressure phase (s.g. Pcc2) has been assigned by single-crystal and powder X-ray diffraction measurements.

摘要

在一项联合实验与理论研究中,对压缩至23吉帕的β-Sb₂O₃多晶型体(即矿物方锑矿)的结构、振动和电子性质进行了研究。基于从头算理论模拟,解释了晶格参数、晶胞体积和多面体单元体积的压缩性,以及其拉曼和红外活性模式在压缩下的行为。方锑矿在高达15吉帕的压力下表现出异常的压缩性,存在四个不同的压力范围,其临界压力分别为2吉帕、4吉帕和10吉帕。主要结构单元的压力依赖性、缺乏软声子以及电子密度电荷拓扑结构表明,在这些临界压力下发生了高于二级的同构相变。特别是,2吉帕和4吉帕处的相变可归因于压缩下Sb原子的立体化学活性孤电子对之间相互作用的变化。在10吉帕以上观察到的变化,其特征是几个拉曼和红外活性模式普遍软化,表明在高于15吉帕发生的一级相变之前存在结构不稳定性。高于此压力,通过单晶和粉末X射线衍射测量确定了一种暂定的新高压相(空间群Pcc2)。

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