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丙酮和二丙酮醇在铀酰配合物的配位和解离反应中的作用。

Roles of acetone and diacetone alcohol in coordination and dissociation reactions of uranyl complexes.

机构信息

Chemical Sciences Division, The Glenn T. Seaborg Center, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

Inorg Chem. 2012 Dec 3;51(23):12768-75. doi: 10.1021/ic3015964. Epub 2012 Nov 12.

Abstract

Combined collision-induced dissociation mass spectrometry experiments with DFT and MP2 calculations were employed to elucidate the molecular structures and energetics of dissociation reactions of uranyl species containing acetone and diacetone alcohol ligands. It is shown that solutions containing diacetone alcohol ligands can produce species with more than five oxygen atoms available for coordination. Calculations confirm that complexes with up to four diacetone alcohol ligands can be energetically stable but that the effective number of atoms coordinating with uranium in the equatorial plane does not exceed five. Water elimination reactions of diacetone alcohol ligands are shown to have two coordination-dependent reaction channels, through formation of mesityl oxide ligands or formation of alkoxide and protonated mesityl oxide species. The present results provide an explanation for the implausible observation of "UO(2)(ACO)(6,7,8)" in and observed water-elimination reactions from purportedly uranyl-acetone complexes (Rios, D.; Rutkowski, P. X.; Van Stipdonk, M. J.; Gibson, J. K. Inorg. Chem. 2011, 50, 4781).

摘要

采用联合碰撞诱导解离质谱实验与 DFT 和 MP2 计算,阐明了含有丙酮和二丙酮醇配体的铀酰物种的分子结构和解离反应的能学。结果表明,含有二丙酮醇配体的溶液可以生成具有超过五个氧原子可供配位的物种。计算证实,最多可含有四个二丙酮醇配体的配合物在能量上是稳定的,但在赤道平面上与铀配位的有效原子数不超过五个。二丙酮醇配体的脱水反应显示出两个配位依赖性反应通道,通过形成均三甲氧基配体或形成烷氧基和质子化的均三甲氧基物种。这些结果为不合理的观察结果提供了解释,即在据称是铀-丙酮配合物(Rios,D.;Rutkowski,P. X.;Van Stipdonk,M. J.;Gibson,J. K. Inorg. Chem. 2011, 50, 4781)中观察到的“[UO (2)(ACO)(6,7,8)](2+)”和观察到的从水消除反应。

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