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首页> 外文期刊>Chemistry - A European Journal >Cation–Cation Complexes of Pentavalent Uranyl: From Disproportionation Intermediates to Stable Clusters
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Cation–Cation Complexes of Pentavalent Uranyl: From Disproportionation Intermediates to Stable Clusters

机译:五价铀酰的阳离子-阳离子络合物:从歧化中间体到稳定簇

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摘要

Three new cation–cation complexes of pentavalent uranyl, stable with respect to the disproportionation reaction, have been prepared from the reaction of the precursor [(UO2py5)(KI2py2)]n (1) with the Schiff base ligands salen2−, acacen2−, and salophen2− (H2salen=N,N′-ethylene-bis(salicylideneimine), H2acacen=N,N′-ethylenebis(acetylacetoneimine), H2salophen=N,N′-phenylene-bis(salicylideneimine)). The preparation of stable complexes requires a careful choice of counter ions and reaction conditions. Notably the reaction of 1 with salophen2− in pyridine leads to immediate disproportionation, but in the presence of [18]crown-6 ([18]C-6) a stable complex forms. The solid-state structure of the four tetranuclear complexes, {[UO2(acacen)]48-]2[K([18]C-6)(py)]2} (3) and {[UO2(acacen)]48-]}2 [K([222])(py)] (4), {[UO2(salophen)]48-K]25-KI]2[(K([18]C-6)]}2 [K([18]C-6)(thf)2]2 I (5), and {[UO2(salen)4][μ8-Rb]2[Rb([18]C-6)]2} (9) ([222]=[222]cryptand, py=pyridine), presenting a T-shaped cation–cation interaction has been determined by X-ray crystallographic studies. NMR spectroscopic and UV/Vis studies show that the tetranuclear structure is maintained in pyridine solution for the salen and acacen complexes. Stable mononuclear complexes of pentavalent uranyl are also obtained by reduction of the hexavalent uranyl Schiff base complexes with cobaltocene in pyridine in the absence of coordinating cations. The reactivity of the complex [UVO2(salen)(py)][Cp*2Co] with different alkali ions demonstrates the crucial effect of coordinating cations on the stability of cation–cation complexes. The nature of the cation plays a key role in the preparation of stable cation–cation complexes. Stable tetranuclear complexes form in the presence of K+ and Rb+, whereas Li+ leads to disproportionation. A new uranyl–oxo cluster was isolated from this reaction. The reaction of [UVO2(salen)(py)][Cp*2Co] (Cp*=pentamethylcyclopentadienyl) with its UVI analogue yields the oxo-functionalized dimer [UO2(salen)(py)]2[Cp*2Co] (8). The reaction of the {[UO2(salen)4][μ8-K]2[K([18]C-6)]2} tetramer with protons leads to disproportionation to UIV and UVI species and H2O confirming the crucial role of the proton in the UV disproportionation.
机译:从前体[(UO 2 py 5 )(KI)的反应中,制得了三种新的对歧化反应稳定的五价铀酰阳离子-阳离子配合物 2 py 2 )] n (1)具有席夫碱配体salen 2-,阿卡森 2-和salophen 2-(H 2 salen = N,N'-乙烯-双(水杨酰亚胺),H 2 acacen = N,N'-亚乙基双(乙酰丙酮亚胺),H 2 沙洛芬= N,N'-亚苯基-双(水杨亚胺)。稳定络合物的制备需要仔细选择抗衡离子和反应条件。值得注意的是,吡啶中1与salophen 2-的反应导致立即歧化,但在[18] crown-6([18] C-6)存在的情况下,形成稳定的络合物。四个四核配合物{[UO 2 (acacen)] 4 8 -] 2的固态结构 [K([18] C-6)(py)] 2 }(3)和{[UO 2 (acacen)] 4 8 -]} 2 [K([222])(py)](4),{[UO 2 (salophen)] 4 8 -K] 2 5 -KI] 2 [( K([18] C-6)]} 2 [K([18] C-6)(thf) 2 ] 2 I(5)和{[UO 2 (salen) 4 ] [μ 8 -Rb] 2 [Rb([18] C-6)] 2 }(9)([222] = [222] cryptand,py = pyridine),已通过X射线晶体学研究确定为T形阳离子-阳离子相互作用,NMR光谱和UV / Vis研究表明可以在吡啶溶液中维持四核结构的萨伦和acacen配合物,也可以在不存在配位阳离子的情况下,通过将吡啶中的六价铀酰席夫碱配合物与钴还原,得到稳定的五价铀酰单核配合物。具有不同碱金属离子的复合物[U V O 2 (salen)(py)] [Cp * 2 Co]证明了配位的关键作用阳离子对阳离子-阳离子配合物稳定性的影响。阳离子的性质在制备稳定的阳离子-阳离子络合物中起关键作用。稳定的四核配合物在K + 和Rb + 存在时形成,而Li + 导致歧化。从该反应中分离出一个新的铀酰-氧代簇。 [U V O 2 (salen)(py)] [Cp * 2 Co](Cp * =五甲基环戊二烯基)与其反应U VI 类似物产生具有氧化功能的二聚体[UO 2 (salen)(py)] 2 [Cp * 2 Co](8)。 {[UO 2 (salen) 4 ] [μ 8 -K] 2 [K ([18] C-6)] 2 }带有质子的四聚体导致与U IV 和U VI 物种以及H 歧化2 O证实了质子在U V 歧化中的关键作用。

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