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环戊二酰亚胺二肟与铈的络合:替代钚的氧化还原行为

Complexation of Cyclic Glutarimidedioxime with Cerium: Surrogating for Redox Behavior of Plutonium.

作者信息

Chen Baihua, Liu Bijun, He Yao, Luo Daibing, Mu Wanjun, Yang Yuchuan, Yang Yanqiu, Peng Shuming, Li Xingliang

机构信息

Institute of Nuclear Physics and Chemistry, China Academy of Engineering Physics, Mianyang, Sichuan 621999, China.

Analytical & Testing Center, Sichuan University, Chengdu, Sichuan 610064, China.

出版信息

Inorg Chem. 2021 Mar 1;60(5):3139-3148. doi: 10.1021/acs.inorgchem.0c03480. Epub 2021 Feb 12.

Abstract

The complexation of cerium with glutarimidedioxime (HL) was studied by potentiometry, ESI-mass spectrometry, and cyclic voltammetry. Crystallization of [Ce(HL)] from Ce starting reactant indicated spontaneous complexation-driven oxidation. In aqueous solution, Ce ions form three successive complexes, Ce(HL), Ce(HL), and Ce(HL) (where HL stands for the singly deprotonated ligand). The interactions of glutarimidedioxime with metal ions are dominantly electrostatic in nature, and the stability constants of the complexes are correlated to the charge density of metal ions. Extrapolations of predicted stability constant (log β) values were made from plotting effective charge and the ionic radius of the metal ion for Pu and Pu. The stability constants of Pu(HL) and Pu(HL) are estimated to be 27.74 and 19.75, respectively. The differences of stability constants mean that glutarimidedioxime selectively binds Pu over Pu by a factor of about 8 orders of magnitude, suggesting Pu would be stabilized by chelation with glutarimidedioxime. The mechanism of reduction of Pu to Pu in acidic solution is explained by decomposition of glutarimidedioxime through acid hydrolysis rather than a chelation-driven mechanism.

摘要

通过电位滴定法、电喷雾电离质谱法和循环伏安法研究了铈与戊二酰亚胺二肟(HL)的络合作用。从铈起始反应物中结晶出[Ce(HL)]表明存在自发的络合驱动氧化。在水溶液中,铈离子形成三种连续的络合物,Ce(HL)、Ce(HL)和Ce(HL)(其中HL代表单去质子化配体)。戊二酰亚胺二肟与金属离子的相互作用本质上主要是静电作用,络合物的稳定常数与金属离子的电荷密度相关。通过绘制有效电荷与钚和钚的金属离子的离子半径,对预测的稳定常数(log β)值进行了外推。估计Pu(HL)和Pu(HL)的稳定常数分别为27.74和19.75。稳定常数的差异意味着戊二酰亚胺二肟选择性结合钚与钚的比例约为8个数量级,表明钚可通过与戊二酰亚胺二肟螯合而稳定。酸性溶液中钚还原为钚的机理是通过酸水解使戊二酰亚胺二肟分解来解释的,而不是螯合驱动的机理。

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