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水合叶蜡石边缘表面上的铀酰吸附:DFT 模型研究。

Uranyl adsorption on solvated edge surfaces of pyrophyllite: a DFT model study.

机构信息

Department Chemie & Catalysis Research Center, Technische Universität München, 85747 Garching, Germany.

出版信息

Phys Chem Chem Phys. 2012 Apr 28;14(16):5815-23. doi: 10.1039/c2cp23886a. Epub 2012 Mar 8.

Abstract

In a computational study we addressed the adsorption of uranyl UO(2)(2+) on solvated (110) and (010) edge surfaces of pyrophyllite, applying a density functional approach to periodic slab models. We explored bidentate adsorption complexes on various partially deprotonated adsorption sites: octahedral Al(O,OH), tetrahedral Si(O,OH), and mixed AlO-SiO. Aluminol sites were determined to be most favorable on the (110) surface of pyrophyllite, while on the (010) surface mixed AlO-SiO sites are preferred. The structural parameters of all low-energy complexes on both surfaces agree rather well with EXAFS results for the structurally similar mineral montmorillonite. We calculate the average U-O distance to surface and aqua ligand oxygen atoms to increase with the increasing coordination number of uranyl whereas EXAFS results indicate the opposite trend. According to our results, several adsorption species, with different coordination numbers on different edge faces, may coexist on clay minerals. This computational finding rationalizes why earlier spectroscopic studies indicated the existence of more than one adsorption species, whereas a single type of adsorption complex was suggested from most EXAFS results.

摘要

在一项计算研究中,我们采用密度泛函方法对周期性平板模型,研究了水合(110)和(010)边缘表面的叶蜡石上铀酰UO(2)(2+)的吸附。我们探索了各种部分去质子化吸附位点上的双齿吸附配合物:八面体 Al(O,OH)、四面体 Si(O,OH)和混合 AlO-SiO。在叶蜡石的(110)表面上,确定铝醇基位点最有利,而在(010)表面上,混合 AlO-SiO 位点是首选。两种表面上所有低能配合物的结构参数与结构相似的蒙脱石矿物的 EXAFS 结果相当吻合。我们计算了表面和水合配体氧原子的平均 U-O 距离,发现随着铀酰配位数的增加而增加,而 EXAFS 结果则表明相反的趋势。根据我们的结果,几种具有不同配位数的吸附物种可能在粘土矿物上共存。这一计算发现解释了为什么早期的光谱研究表明存在不止一种吸附物种,而大多数 EXAFS 结果表明只有一种类型的吸附配合物。

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