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六氯合镅(III)中的键合。

Covalency in Americium(III) Hexachloride.

机构信息

Los Alamos National Laboratory , Los Alamos, New Mexico 87545, United States.

University of California , Irvine, California 92697-2025, United States.

出版信息

J Am Chem Soc. 2017 Jun 28;139(25):8667-8677. doi: 10.1021/jacs.7b03755. Epub 2017 Jun 14.

Abstract

Developing a better understanding of covalency (or orbital mixing) is of fundamental importance. Covalency occupies a central role in directing chemical and physical properties for almost any given compound or material. Hence, the concept of covalency has potential to generate broad and substantial scientific advances, ranging from biological applications to condensed matter physics. Given the importance of orbital mixing combined with the difficultly in measuring covalency, estimating or inferring covalency often leads to fiery debate. Consider the 60-year controversy sparked by Seaborg and co-workers ( Diamond, R. M.; Street, K., Jr.; Seaborg, G. T. J. Am. Chem. Soc. 1954 , 76 , 1461 ) when it was proposed that covalency from 5f-orbitals contributed to the unique behavior of americium in chloride matrixes. Herein, we describe the use of ligand K-edge X-ray absorption spectroscopy (XAS) and electronic structure calculations to quantify the extent of covalent bonding in-arguably-one of the most difficult systems to study, the Am-Cl interaction within AmCl. We observed both 5f- and 6d-orbital mixing with the Cl-3p orbitals; however, contributions from the 6d-orbitals were more substantial. Comparisons with the isoelectronic EuCl indicated that the amount of Cl 3p-mixing with Eu 5d-orbitals was similar to that observed with the Am 6d-orbitals. Meanwhile, the results confirmed Seaborg's 1954 hypothesis that Am 5f-orbital covalency was more substantial than 4f-orbital mixing for Eu.

摘要

深入理解共价键(或轨道杂化)至关重要。共价键在指导几乎任何给定化合物或材料的化学和物理性质方面起着核心作用。因此,共价键的概念有可能带来广泛而实质性的科学进步,从生物应用到凝聚态物理。鉴于轨道杂化的重要性以及测量共价键的困难,估计或推断共价键往往会引发激烈的争论。考虑到 Seaborg 及其同事(Diamond,R. M.;Street,K.,Jr.;Seaborg,G. T.)引发的长达 60 年的争议,当时有人提出 5f 轨道的共价键有助于镅在氯化物基质中的独特行为。在这里,我们描述了使用配体 K 边 X 射线吸收光谱(XAS)和电子结构计算来量化 Am-Cl 相互作用中 Am-Cl 键合程度,这无疑是最难研究的体系之一。我们观察到 5f 和 6d 轨道与 Cl-3p 轨道的杂化;然而,6d 轨道的贡献更为显著。与等电子 EuCl 的比较表明,Eu 5d 轨道与 Cl 3p 轨道的混合量与观察到的 Am 6d 轨道相似。同时,结果证实了 Seaborg 1954 年的假设,即 Am 5f 轨道的共价键比 Eu 的 4f 轨道混合更为显著。

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