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Family of Cofacial Bimetallic Complexes of a Hexaanionic Carboxamide Cryptand

机译:六阴离子羧酰胺密码子的界面双金属配合物家族

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摘要

A series of coordination compounds has been prepared comprising manganese, iron, nickel, and zinc bound by a hexaanionic cryptand where carboxamides are anionic N-donors. The metal complexes have been investigated by X-ray crystallography, and possess metal centers in trigonal monopyramidal geometries with intermetallic distances spanning d_(Mn,avg) = 6.080 ? to d_(Ni,avg) = 6.495 ?. All complexes featuring trigonal monopyramidal metal(II) ions crystallize in Cc, and feature extended three-dimensional networks composed of cryptate anions linked by bridging potassium countercations. We also report the first solid state structure of the free cryptand ligand, which features no guest in its cavity and which possesses an extended hydrogen-bonding network. SQuID magnetometry data of the metal complexes reveal weak antiferromagnetic coupling of the metal centers. Only the diiron(II) complex exhibits reversible electrochemistry, and correspondingly, its chemical oxidation yields a powder formulated as the diiron(III) congener. The insertion of cyanide into the intermetallic cleft of the diiron(II) complex has been achieved, and comparisons of its solid state structure to the recently reported dicobalt(II) analogue are made. The antiferromagnetic coupling between the diiron(II) and the dicobalt(II) centers when bridged by cyanide does not increase significantly relative to the unbridged congeners. A one-site model satisfactorily fits M?ssbauer spectra of unbridged diiron(II) and diiron(III) complexes whereas a two site fit was needed to model the iron(II) centers that are bridged by cyanide.
机译:已经制备了一系列配位化合物,其包含被六阴离子穴状配体结合的锰,铁,镍和锌,其中羧酰胺是阴离子N-给体。已经通过X射线晶体学研究了金属配合物,并且其金属中心为三角形,其单金属间距离为d_(Mn,avg)=6.080≤t。至d_(Ni,avg)=6.495Ω。所有具有三角型单锥体金属(II)离子的配合物均在Cc中结晶,并具有扩展的三维网络,该网络由通过桥联钾抗衡阳离子连接的隐性阴离子组成。我们还报告了游离的穴状配体的第一个固态结构,该结构在其腔体中没有客体,并具有扩展的氢键网络。金属配合物的SQuID磁力分析数据揭示了金属中心的弱反铁磁耦合。仅二价铁(II)配合物显示出可逆的电化学性质,相应地,其化学氧化产生了一种配制成二价铁(III)同源物的粉末。已实现了将氰化物插入二铁(II)配合物的金属间裂隙中,并将其固态结构与最近报道的二钴(II)类似物进行了比较。当二价铁被氰化物桥接时,二铁(II)和二钴(II)中心之间的反铁磁耦合相对于未桥接的同类物不会显着增加。一个位点模型可以令人满意地拟合未桥连的二价铁(II)和二价铁(III)配合物的Mssbauer光谱,而需要两个位置拟合来模拟由氰化物桥接的铁(II)中心。

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