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异双金属铀酰冠醚配合物的合成、分离与研究

Synthesis, Isolation, and Study of Heterobimetallic Uranyl Crown Ether Complexes.

作者信息

Golwankar Riddhi R, Ervin Alexander C, Makoś Małgorzata Z, Mikeska Emily R, Glezakou Vassiliki-Alexandra, Blakemore James D

机构信息

Department of Chemistry, University of Kansas, 1567 Irving Hill Road, Lawrence, Kansas 66045, United States.

Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37830, United States.

出版信息

J Am Chem Soc. 2024 Apr 10;146(14):9597-9604. doi: 10.1021/jacs.3c12075. Epub 2024 Mar 28.

Abstract

Although crown ethers can selectively bind many metal cations, little is known regarding the solution properties of crown ether complexes of the uranyl dication, UO. Here, the synthesis and characterization of isolable complexes in which the uranyl dication is bound in an 18-crown-6-like moiety are reported. A tailored macrocyclic ligand, templated with a Pt(II) center, captures UO in the crown moiety, as demonstrated by results from single-crystal X-ray diffraction analysis. The U(V) oxidation state becomes accessible at a quite positive potential () of -0.18 V vs Fc upon complexation, representing the most positive U/U potential yet reported for the UO core. Isolation and characterization of the U(V) form of the crown complex are also reported here; there are no prior reports of reduced uranyl crown ether complexes, but U(V) is clearly stabilized by crown chelation. Joint computational studies show that the electronic structure of the U(V) form results in significant weakening of U-O bonding despite the quite positive reduction potential at which this species can be accessed, underscoring that crown-ligated uranyl species could demonstrate unique reactivity under only modestly reducing conditions.

摘要

尽管冠醚可以选择性地结合许多金属阳离子,但关于双氧铀酰二价阳离子(UO)的冠醚配合物的溶液性质却知之甚少。在此,我们报道了可分离的配合物的合成与表征,其中双氧铀酰二价阳离子以类似18-冠-6的部分结合。由单晶X射线衍射分析结果表明,一种以Pt(II)中心为模板的定制大环配体在冠醚部分捕获了UO。络合后,U(V)氧化态在相对于二茂铁为 -0.18 V的相当正的电位下可达,这代表了迄今报道的UO核中最正的U/U电位。本文还报道了冠醚配合物U(V)形式的分离与表征;此前没有关于还原态双氧铀酰冠醚配合物的报道,但U(V)显然通过冠醚螯合作用得以稳定。联合计算研究表明,尽管可以在相当正的还原电位下获得该物种,但U(V)形式的电子结构导致U-O键显著减弱,这突出表明冠醚配位的双氧铀酰物种在仅适度还原的条件下可能表现出独特的反应活性。

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