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镧系元素离子与治疗性螯合剂 3,4,3-LI(1,2-HOPO)形成的键合共价键和氧化态。

Bond Covalency and Oxidation State of Actinide Ions Complexed with Therapeutic Chelating Agent 3,4,3-LI(1,2-HOPO).

机构信息

Theoretical Division , Los Alamos National Laboratory , Los Alamos , New Mexico 87544 , United States.

Chemical Sciences Division , Lawrence Berkeley National Laboratory , Berkeley , California 94720 , United States.

出版信息

Inorg Chem. 2018 May 7;57(9):5352-5363. doi: 10.1021/acs.inorgchem.8b00345. Epub 2018 Apr 6.

Abstract

The hydroxypyridinone ligand 3,4,3-LI(1,2-HOPO) is a promising agent for biological decorporation of radionuclides, and allows spectroscopic detection of many lanthanide (Ln) and actinide (An) species via sensitized luminescence. Despite the manifest uses of this ligand, the structural and thermodynamic properties of its complexes across the An series remain understudied. Theoretical investigations of the binding of An(III) and An(IV) ions, from actinium to einsteinium, by the 3,4,3-LI(1,2-HOPO) ligand, as well as experimental extended X-ray absorption fine structure (EXAFS) studies on the trivalent americium, curium, and californium complexes were employed to address the resulting structures, thermodynamic parameters, redox properties, and corresponding electronic configurations. An(IV) ions were found to form much stronger complexes than An(III) ions, consistent with experimental measurements. Complexation of both An(III) and An(IV) ions generally becomes more favorable for heavier actinides, reflecting increased energy degeneracy driven covalency and concomitant orbital mixing between the 5f orbitals of the An ions and the π orbitals of the ligand. Notably, the ability of this ligand to either accept or donate electron density as needed from its pyridine rings is found to be key to its extraordinary stability across the actinide series.

摘要

羟基吡啶酮配体 3,4,3-LI(1,2-HOPO) 是一种很有前途的生物放射性核素去除剂,通过敏化发光可以检测许多镧系(Ln)和锕系(An)物质。尽管该配体已经得到了广泛的应用,但它在整个锕系元素系列中的配合物的结构和热力学性质仍未得到充分研究。本研究采用理论计算方法研究了 3,4,3-LI(1,2-HOPO)配体与锕系(从锕到锿)中 An(III)和 An(IV)离子的结合情况,并对三价镅、锔和锎的配合物进行了扩展 X 射线吸收精细结构(EXAFS)实验研究,以确定其结构、热力学参数、氧化还原性质和相应的电子构型。研究结果表明,An(IV) 离子形成的配合物比 An(III) 离子强得多,这与实验测量结果一致。对于较重的锕系元素,An(III) 和 An(IV) 离子的配合物通常变得更有利,这反映了能量简并性驱动的共价性增加,以及锕系离子的 5f 轨道和配体的π轨道之间的轨道混合。值得注意的是,该配体的吡啶环具有接受或提供电子密度的能力,这是其在整个锕系元素系列中具有非凡稳定性的关键。

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