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首页> 外文期刊>The journal of physics and chemistry of solids >Combined experimental and first-principles studies of a hydrated uranyl carbonate: Insight into phonon spectra for a core environmental class of uranium materials
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Combined experimental and first-principles studies of a hydrated uranyl carbonate: Insight into phonon spectra for a core environmental class of uranium materials

机译:碳酸水合亚烷基酯的组合实验和第一原理研究:对铀材料核心环境级核心谱的洞察

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摘要

Density functional theory calculations for an environmentally important crystalline phase of a hydrated uranyl carbonate, liebigite (Ca2UO2(CO3)(3)center dot 11H(2)O), were performed at the generalized gradient approximation Perdew-Burke-Ernzherhof functional level to support experimental interpretation of vibrational data. This phase contains the uranyl tricarbonate center (UO2(CO3)(3)(4-), which represents the coordination core of many uranium materials found in nature. This hydrated crystal is surprisingly found to have a theoretical band gap of about 2.45 eV. The electronic structure shows strong covalent U-O and C-O bonds accounting for the marked relative intensity of the Raman bands. Vibrational and photoluminescence spectra are presented. Original assignments of the vibrational lines are proposed on the basis of the theoretical analysis of the normal modes. The role of water in the vibrational properties of the crystal is discussed by investigation of, in particular, a "dry" hypothetical framework structure without water molecules.
机译:在碳酸水合亚烷酯的环境重要结晶相,LieBigite(Ca2uO 2(CO 3)(3)中心点11h(2)O)的密度函数理论计算在广义梯度近似百分点逐个函数水平上进行施用振动数据的实验解释。该相含有三碳酸酯中心(UO2(CO 3)(3)(4)(4-),其代表了许多本质上发现的铀材料的配位核心。这种水晶晶体令人惊讶地发现具有约2.45eV的理论带隙。电子结构显示出强烈的共价UO和CO键,占拉曼带的标记相对强度。提出了振动和光致发光光谱。基于正常模式的理论分析,提出了振动线的原始分配。作用通过对没有水分子的“干”假设的框架结构,讨论了晶体的振动性质中的水。

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