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元素周期表的定向演化:探究晚期锕系元素的电子结构

Directed evolution of the periodic table: probing the electronic structure of late actinides.

作者信息

Marsh M L, Albrecht-Schmitt T E

机构信息

Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL, 32306 USA.

出版信息

Dalton Trans. 2017 Jul 25;46(29):9316-9333. doi: 10.1039/c7dt00664k.

DOI:10.1039/c7dt00664k
PMID:28660984
Abstract

Recent investigations of the coordination chemistry and physical properties of berkelium (Z = 97) and californium (Z = 98) have revealed fundamental differences between post-curium elements and lighter members of the actinide series. This review highlights these developments and chronicles key findings and concepts from the last half-century that have helped usher in a new understanding of the evolution of electronic structure in the periodic table.

摘要

最近对锫(Z = 97)和锎(Z = 98)的配位化学和物理性质的研究揭示了锕系后元素与锕系较轻成员之间的根本差异。本综述重点介绍了这些进展,并记录了过去半个世纪的关键发现和概念,这些发现和概念有助于开启对元素周期表中电子结构演变的新认识。

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Directed evolution of the periodic table: probing the electronic structure of late actinides.元素周期表的定向演化:探究晚期锕系元素的电子结构
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Contemporary Chemistry of Berkelium and Californium.锫和锎的当代化学
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Emergence of californium as the second transitional element in the actinide series.锎作为锕系中第二个过渡元素的出现。
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Transient Radiation-Induced Berkelium(III) and Californium(III) Redox Chemistry in Aqueous Solution.水溶液中瞬态辐射诱导的锫(III)和锎(III)氧化还原化学
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Chelation and stabilization of berkelium in oxidation state +IV.将锫(Berkelium)稳定在+IV 氧化态下的螯合作用。
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Coordination chemistry with f-element complexes for an improved understanding of factors that contribute to extraction selectivity.配合元素 f 络合物的配位化学,以深入了解影响萃取选择性的因素。
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Nat Commun. 2021 Dec 10;12(1):7230. doi: 10.1038/s41467-021-27576-y.
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