首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Oxidation of uranium(iv) mixed imido-amido complexes with PhEEPh and to generate uranium(vi) bis(imido) dichalcogenolates, U(NR)(2)(EPh)(2)(L)(2)
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Oxidation of uranium(iv) mixed imido-amido complexes with PhEEPh and to generate uranium(vi) bis(imido) dichalcogenolates, U(NR)(2)(EPh)(2)(L)(2)

机译:铀(iv)混合咪啶-MIDO复合物的氧化与Pheeph和产生铀(vi)双(咪啶)二均致原酸盐,U(NR)(2)(2)(2)(1)(2)

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This work provides new routes for the conversion of U(iv) into U(vi) bis(imido) complexes and offers new information on the manner in which the U(vi) compounds form. Many compounds from the series described by the general formula U(NR)(2)(EPh)(2)(L)(2) (R = 2,6-diisopropylphenyl, tert-butyl; E = S, Se, Te; L = py, EPh) were synthesized via oxidation of an in situ generated U(iv) amido-imido species with Ph2E2. This synthetic sequence provides a general route into bis(imido) U(vi) chalcogenolate complexes, circumventing the need to perform problematic salt metathesis reactions on U(vi) iodides. Investigation into the speciation of the U(iv) complexes that form prior to oxidation found a significant dependence on the identity of the ancillary ligands, with (t)Bu(2)bpy forming the isolable imido-(bis)amido complex, U(NDipp)(NHDipp)(2)((t)Bu(2)bpy)(2). Together, these data are consistent with the view that the bis(imido) U(vi) motif - much like the uranyl ion, UO22+ - is a thermodynamic sink into which simple ligand frameworks are unable to prevent uranium from falling when in the presence of a suitable retinue of imido proligands.
机译:这项工作为U(IV)转换为U(VI)BIS(IMIDO)复合物提供了新的路由,并提供了关于U(VI)化合物形式的方式的新信息。来自通式U(2)(2)(Eph)(2)(2)(2)(2)(2)(r = 2,6-二异丙基苯基,叔丁基,叔丁基,Se,Te,来自所述序列的许多化合物;通过用pH2E2原位产生的原位产生的U(IV)酰胺 - 咪啶物种合成L = PY,EPH)。该合成序列提供了一般的途径进入双(酰亚胺)U(VI)Chalogalate络合物,规避需要对U(VI)碘化物进行有问题的盐复分解反应。对氧化之前的形式的U(iv)复合物的形式研究发现了对辅助配体的身份的显着依赖性,(T)Bu(2)Bpy形成可分离的酰亚胺 - (BIS)amido复合物,U( NDIPP)(NHDIPP)(2)((T)BU(2)BPY)(2)。这些数据在一起是一致的,即BIS(IMIDO)U(VI)图案 - 非常类似于铀酰离子,UO22 + - 是一种热力学水槽,其简单的配体框架不能在存在时防止铀掉落合适的咪啶脯氨酸的视网膜。

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