Pu(IV)与低指数水合铁表面的相互作用:周期性边界条件DFT研究。

IF 3.9 3区 环境科学与生态学 Q1 CHEMISTRY, ANALYTICAL
Ryan L. Dempsey and Nikolas Kaltsoyannis
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引用次数: 0

摘要

纳米颗粒水合铁(Fh)对环境污染物,特别是放射性核素具有很强的亲和力。最近,实验发现Pu(IV)与Fh形成四齿内球表面配合物,这推动了使用DFT+Ueff对Pu(IV)与Fh(100)、Fh(110)和Fh(120)表面相互作用的研究。在引入Pu(IV)之前,我们首先讨论了自旋排列和Ueff的选择对体Fh的影响。弛豫晶格参数与先前的实验和模拟结果吻合良好,并确定了直接/间接带隙。三种末端的功函数、裸表面能和水合表面能与先前的研究一致,但我们强调需要在该领域进行进一步的实验工作。多齿结合在Fh表面是非常有利的,Pu(IV)表面络合能显着放热(-3.01至-6.24 eV)。对于能量最低的配合物,Pu-O和Pu-Fe的平均距离在EXAFS测量值的0.31 Å以内。Pu(IV)在Fh(110)和Fh(120)上呈四齿结合,在Fh(100)上呈三齿结合。表面配合物的稳定性取决于Pu的电荷,表明主要是离子Pu-O键,尽管Pu(f)和O(p)态在价带的键合区域杂化。利用分子中原子的量子理论确定了Pu- o相互作用是部分共价的,这与我们之前发现的Pu(IV)与Fe13 Keggin簇结合的结果一致。我们的工作支持了最近的实验证据,即Pu(IV)的摄取始于Keggin,并通过转化为Fh而保持结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The interaction of Pu(iv) with low index ferrihydrite surfaces: a periodic boundary condition DFT study†

The interaction of Pu(iv) with low index ferrihydrite surfaces: a periodic boundary condition DFT study†

Nanoparticulate ferrihydrite (Fh) has a strong affinity towards environmental contaminants, particularly radionuclides. Recently, Pu(IV) was found experimentally to form a tetradentate inner-sphere surface complex with Fh, motivating the present study of the interaction of Pu(IV) with Fh(100), Fh(110) and Fh(120) surfaces using DFT+Ueff. Prior to introduction of Pu(IV), we first discuss the effects of spin arrangement and the choice of Ueff on bulk Fh. The relaxed lattice parameters agree well with previous experiments and simulations, and band gaps (direct/indirect) are determined. The work function, bare and hydrated surface energies of the three terminations are in agreement with previous studies, though we highlight the need for further experimental work in this area. Multidentate binding to the Fh surfaces is highly favorable, with Pu(IV) surface complexation energies significantly exothermic (−3.01 to −6.24 eV). Average Pu–O and Pu–Fe distances are within 0.31 Å of EXAFS measurements, for the lowest energy complexes. Pu(IV) binding is tetradentate on Fh(110) and Fh(120) and tridentate on Fh(100). Surface complex stability depends on the charge of the Pu, indicating primarily ionic Pu–O bonds, though Pu(f) and O(p) states hybridise in the bonding region of the valence band. The Pu–O interactions are determined as partially covalent using the quantum theory of atoms in molecules, consistent with our previous findings for Pu(IV) bound to the Fe13 Keggin cluster. Our work supports recent experimental evidence that Pu(IV) uptake begins via the Keggin and remains bound through transformation to Fh.

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来源期刊
Environmental Science: Processes & Impacts
Environmental Science: Processes & Impacts CHEMISTRY, ANALYTICAL-ENVIRONMENTAL SCIENCES
CiteScore
9.50
自引率
3.60%
发文量
202
审稿时长
1 months
期刊介绍: Environmental Science: Processes & Impacts publishes high quality papers in all areas of the environmental chemical sciences, including chemistry of the air, water, soil and sediment. We welcome studies on the environmental fate and effects of anthropogenic and naturally occurring contaminants, both chemical and microbiological, as well as related natural element cycling processes.
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