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铀酰二价阳离子的可控顺序单电子还原

Controlled and sequential single-electron reduction of the uranyl dication.

作者信息

Obey Tom J N, Nichol Gary S, Love Jason B

机构信息

EaStCHEM School of Chemistry, Joseph Black Building, University of Edinburgh, Edinburgh EH9 3FJ, UK.

出版信息

Dalton Trans. 2024 Oct 8;53(39):16229-16240. doi: 10.1039/d4dt02367f.

Abstract

A flexible tripodal pyrrole-imine ligand (HL) has been used to facilitate the controlled and sequential single-electron reductions of the uranyl dication from the U(VI) oxidation state to U(V) and further to U(IV), processes that are important to understanding the reduction of uranyl and its environmental remediation. The uranyl(VI) complexes UO(HL)(sol) (sol = THF, py) were straightforwardly accessed by the transamination reaction of HL with UO{N(SiMe)}(THF) and adopt 'hangman' structures in which one of the pyrrole-imine arms is pendant. While deprotonation of this arm by LiN(SiMe) causes no change in uranyl oxidation state, single-electron reduction of uranyl(VI) to uranyl(V) occurred on addition of two equivalents of KN(SiMe) to UO(HL)(sol). The potassium cations of this new [UO(KL)] dimer were substituted by transmetalation with the appropriate metal chloride salt, forming the new uranyl(V) tetra-heterometallic complexes, [UOZn(L)(py)] and [UOLn(Cl)(L)(py)] (Ln = Y, Sm, Dy). The dimeric uranyl(V)-yttrium complex underwent further reduction and chloride abstraction to form the tetrametallic U(IV) complex [UOY(py)], so highlighting the adaptability of this ligand to stabilise a variety of different uranium oxidation states.

摘要

一种柔性三脚架吡咯 - 亚胺配体(HL)已被用于促进从U(VI)氧化态到U(V)再到U(IV)的可控且连续的单电子还原过程,这些过程对于理解铀酰的还原及其环境修复非常重要。通过HL与UO{N(SiMe)}(THF)的转氨反应可直接得到铀酰(VI)配合物UO(HL)(sol)(sol = THF,py),其采用“绞刑架”结构,其中一个吡咯 - 亚胺臂是悬垂的。虽然LiN(SiMe)使该臂去质子化不会导致铀酰氧化态发生变化,但向UO(HL)(sol)中加入两当量的KN(SiMe)会使铀酰(VI)单电子还原为铀酰(V)。这种新的[UO(KL)]二聚体的钾阳离子通过与适当的金属氯化物盐进行金属转移反应被取代,形成了新的铀酰(V)四杂金属配合物[UOZn(L)(py)]和[UOLn(Cl)(L)(py)](Ln = Y,Sm,Dy)。二聚体铀酰(V) - 钇配合物进一步还原并脱去氯形成四金属U(IV)配合物[UOY(py)],从而突出了该配体稳定多种不同铀氧化态的适应性。

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