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Oxidative Addition to U(V)-U(V) Dimers: Facile Routes to Uranium(VI) Bis(imido) Complexes

机译:U(V)-U(V)二聚体的氧化加成:铀(VI)双(亚氨基)配合物的简便途径

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摘要

The ability of dimeric bis(imido) uranium(V) complexes with the general formula [U(NtBu)2(Y)(tBu2bpy)]2 (Y = I (1), SPh (2); tBu2bpy = 4,40-di-tert-butyl-2,20-bipyridyl) to behave as two-electron reducing agents was examined with I2, AgX (X = Cl, Br), PhEEPh (E = S, Se, Te), and chalcogen (O, S, Se) atom transfer reagents. The addition of I2 and AgX to 1 leads to the formation of uranium(VI) dihalide complexes with the general formula U(NtBu)2(I)(X)(tBu2bpy) (X = I (3), Cl (4), Br (5)). Complexes 1 and 2 can also reduce PhEEPh to generate uranium(VI) complexes with the general formula U(NtBu)2(X)(EPh)(tBu2bpy) (X = I, E = S (6), Se (8), Te (10); X = SPh, E = S (7), Se (12)). These unsymmetrical complexes appear to be in equilibrium with the uranium(VI) complexes U(NtBu)2(X)2(tBu2bpy) and U(NtBu)2(EPh)2(tBu2bpy) (E = Se (9), Te (11)) and suggest that both U-I and U-E bonds possess a labile nature in bis(imido) uranium(VI) complexes. Complex 1 also reacts as a two-electron reductant toward chalcogen atom transfer reagents such as 4-methylmorpholine N-oxide, S8, and Se to produce dimeric bis(imido) uranium(VI) complexes with the general formula [U(NtBu)2(I)(tBu2bpy)]2(u-E) (E=O(13), S (14), Se (15)) and [U(NtBu)2(I)(tBu2bpy)]2(u-n2:n2- E4) (E = S(16), Se (17)). Density functional theory studies performed on a model complex of 13 indicate the presence of multiple bonding in the bridging U-O bond.
机译:通式为[U(NtBu)2(Y)(tBu2bpy)] 2(Y = I(1),SPh(2); tBu2bpy = 4,40-的二聚双(亚氨基)铀(V)配合物的能力用I2,AgX(X = Cl,Br),PhEEPh(E = S,Se,Te)和硫族元素(O,2,3-二叔丁基2,20-联吡啶)充当二电子还原剂。 S,Se)原子转移试剂。将I2和AgX加到1会导致形成通式为U(NtBu)2(I)(X)(tBu2bpy)(X = I(3),Cl(4), Br(5))。配合物1和2也可以还原PhEEPh以生成通式为U(NtBu)2(X)(EPh)(tBu2bpy)的铀(VI)配合物(X = I,E = S(6),Se(8), Te(10); X = SPh,E = S(7),Se(12))。这些不对称的络合物似乎与铀(VI)络合物U(NtBu)2(X)2(tBu2bpy)和U(NtBu)2(EPh)2(tBu2bpy)处于平衡状态(E = Se(9),Te( 11)),并建议UI和UE键在双(酰亚胺)铀(VI)配合物中均具有不稳定的性质。配合物1也作为双电子还原剂与硫族原子转移试剂(例如4-甲基吗啉N-氧化物,S8和Se)反应,生成通式为[U(NtBu)2]的二聚双(亚氨基)铀(VI)配合物。 (I)(tBu2bpy)] 2(uE)(E = O(13),S(14),Se(15))和[U(NtBu)2(I)(tBu2bpy)] 2(u-n2:n2 -E4)(E = S(16),Se(17))。对13的模型复合物进行的密度泛函理论研究表明,在桥接的U-O键中存在多重键。

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