首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Electronic and magnetic metal-metal interactions in dinuclear oxomolybdenum(V) complexes across bis-phenolate bridging ligands with different spacers between the phenolate termini: ligand-centred vs. metal-centred redox activity
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Electronic and magnetic metal-metal interactions in dinuclear oxomolybdenum(V) complexes across bis-phenolate bridging ligands with different spacers between the phenolate termini: ligand-centred vs. metal-centred redox activity

机译:跨双酚盐桥联配体的双核氧钼(V)配合物中的电子和磁性金属-金属相互作用,在酚盐末端之间具有不同的间隔基:以配体为中心与以金属为中心的氧化还原活性

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A series of dinuclear complexes has been prepared in which two {Mo-V(Tp(Me,Me))(O)Cl} fragments (abbreviated as Mo; Tp(Me,Me)=tris(3,5-dimethylpyrazol-1-yl)hydroborate) are attached to either end of a bis-p-phenolate bridging ligand [(4,4'-OC6H4)-X-(4,4'-C6H4O)](2-). The complexes are Mo-2(C=C) (X=CH=CH), Mo-2(C=C)(2) (X=CH=CH-CH=CH), Mo-2(C=C)(3) (X=CH=CH-CH=CH-CH=CH), Mo-2(th) (X=2,5-thiophenediyl), Mo-2(th)(2) (X=2,5:2',5'-bithiophenediyl), Mo-2(th)(3) (X=2,5:2',5':2",5"-terthiophenediyl), Mo-2(C=C) (X=C=C), Mo-2(N=N) (X=N=N), Mo-2(CO) [X=C(O)] and Mo-2(C(2)PhiC(2)) [X=CH=CH(1,4-C6H4)CH=CH]. Electrochemical, UV/VIS/NIR spectroelectrochemical and magnetic measurements have been carried out in order to see how effectively the different spacer groups X mediate electronic and magnetic interactions between the two redox-active, paramagnetic, Mo centres. The electronic interactions were determined from the redox separation between the two successive one-electron oxidations which are formally Mo(VI)-Mo(V) couples; it was found that thienyl units in the bridging ligand are much more effective at maintaining electronic communication over long distances than p-phenylene or ethenyl spacers of comparable lengths. The azo (N=N) linkage afforded a much weaker electronic interaction than the ethenyl or ethynyl spacers. UV/VIS/NIR spectroelectrochemical studies showed that whereas the first oxidation is metal-centred to give Mo(VI)-Mo(V) species with characteristic intense phenolate --> Mo(VI) LMCT transitions in the near-IR region, the spectra of the doubly oxidised complexes are characteristic of quinones: thus, the sequence of species formed on oxidation is [Mo(V)(mu -diolate)Mo(V)](0) --> [Mo(V)(mu -diolate)Mo(VI)](+)--> [Mo(V)(mu -quinone)Mo(V)](2+), with an internal charge redistribution associated with the second oxidation. Semi-empirical ZINDO calculations provide some support for this. Magnetic susceptibility measurements on Mo-2(C=C), Mo-2(th), Mo-2(N=N) and Mo-2(C=C) show that all are weakly antiferromagnetically coupled, as expected on the basis of a spin-polarisation picture, with the order of strength of the magnetic interaction being the reverse of the order for electronic coupling, such that Mo-2(th) affords the strongest electronic interaction but the weakest magnetic interaction. [References: 94]
机译:已制备了一系列双核配合物,其中有两个{Mo-V(Tp(Me,Me))(O)Cl}片段(缩写为Mo; Tp(Me,Me)= tris(3,5-二甲基吡唑-1) (-基)氢硼酸酯)连接至双-对-酚酸酯桥联配体[(4,4'-OC6H4)-X-(4,4'-C6H4O)](2-)的任一端。络合物为Mo-2(C = C)(X = CH = CH),Mo-2(C = C)(2)(X = CH = CH-CH = CH),Mo-2(C = C) (3)(X = CH = CH-CH = CH-CH = CH),Mo-2(th)(X = 2,5-噻吩二基),Mo-2(th)(2)(X = 2.5 :2',5'-联噻吩二基),Mo-2(th)(3)(X = 2,5:2',5':2“,5”-对噻吩二基),Mo-2(C = C)( X = C = C),Mo-2(N = N)(X = N = N),Mo-2(CO)[X = C(O)]和Mo-2(C(2)PhiC(2) )[X = CH = CH(1,4-C6H4)CH = CH]。为了观察不同的间隔基X如何有效地介导两个具有氧化还原活性的顺磁性Mo中心之间的电子和磁性相互作用,已经进行了电化学,UV / VIS / NIR光谱电化学和磁性测量。电子相互作用是由两个连续的单电子氧化形式之间的氧化还原分离确定的,这两个电子形式上为Mo(VI)-Mo(V)对。已经发现,与相当长度的对亚苯基或乙烯基间隔基相比,桥接配体中的噻吩基单元在长距离上保持电子通讯的效率要高得多。与乙烯基或乙炔基间隔基相比,偶氮(N = N)键提供的电子相互作用弱得多。 UV / VIS / NIR光谱电化学研究表明,虽然第一次氧化是以金属为中心的,以产生具有特征性强酚盐的Mo(VI)-Mo(V)物种->在近IR区域中有Mo(VI)LMCT跃迁,双重氧化的配合物的光谱是醌的特征:因此,在氧化反应中形成的物质的顺序为[Mo(V)(mu-diolate)Mo(V)](0)-> [Mo(V)(mu-二醇盐)Mo(VI)](+)-> [Mo(V)(μ-醌)Mo(V)](2+),其内部电荷重新分布与第二次氧化有关。半经验ZINDO计算为此提供了一些支持。在Mo-2(C = C),Mo-2(th),Mo-2(N = N)和Mo-2(C = C)上的磁化率测量结果表明,所有磁化率都弱反铁磁耦合自旋极化图片的磁相互作用强度的顺序与电子耦合的顺序相反,因此Mo-2(th)提供最强的电子相互作用但最弱的磁性相互作用。 [参考:94]

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