首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Very weak electron-electron exchange interactions in paramagnetic dinuclear tris(pyrazolyl)boratomolybdenum centres with extended bridging ligands: estimation of the exchange coupling constant J by simulation of second-order EPR spectra
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Very weak electron-electron exchange interactions in paramagnetic dinuclear tris(pyrazolyl)boratomolybdenum centres with extended bridging ligands: estimation of the exchange coupling constant J by simulation of second-order EPR spectra

机译:具有扩展桥联配体的顺磁双核三(吡唑基)硼原子钼中心的电子-电子交换相互作用非常弱:通过模拟二阶EPR光谱估算交换耦合常数J

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Two series of dinuclear complexes have been prepared in which paramagnetic nitrosylmolybdenum(I) or oxomolybdenum(V) units have been attached to either end of very long bis-pyridyl or bis-phenolate bridging ligands respectively. The first series of complexes is [{Mo~1(Tp~(Me, Me))(NO)Cl}_2{μ-L}][L = 4,4′-pyridyl)ethen-1-yl]-biphenyl; 4,4"-bis(2-(4-pyridyl)ethen-1-yl]terphenyl 2; 4,4′-bis[2-(4-pyridyl)ethen-1-yl]benzophenone 3; 4,4′-bis[2-(4-pyridyl)ethen-1-yl]benzil 4; or 6,6′-bis[2-(4-pyridyl)ethen-1-yl]-2,2′-bipyridine 5). The second series of complexes is [{Mo~v(Tp~(Me,Me))(O)Cl}_2(μ-L)](H_2L = HOC_6H_4OC(S)OC_6H_4OH 6; HOC_6H_4OS(O)OC_6H_4OH 7; or HOC_6H_4OC(O)-C_6H_4C(O)OC_6H_4OH 8, with all-para substitution for the C_6H_4 units in each case). The very weak spin exchange interactions between the remote paramagnetic centres result in many cases in second-order EPR spectra, because |J|≈A (where J is the exchange coupling constant, and A the electron-nucleus hyperfine coupling). In these cases the appearance of the EPR spectra is complicated and sensitive to small changes in the magnitude of J, which could be exploited ot estimate values for |J| by comparing the measured spectra with ocmputer simulations calculated using a range of valves of |J|. For the first series of complexes the spin exchange interactions decrease in the order 1 (|J|>=4000), 2 (1000), 3(150), 4(43), 5(|J|<=10 MHz) which is readily explicable in terms of the lengths, conformations and substitution patterns of the bridging ligands. For the second series of complexes, 6 and 7 both gave second-order spectra with |J|=2000 MHz, whereas 8, with a much longer bridging ligand, has |J|<=10 MHz. Crucially, these spin-exchange interactions are much too weak to be determined by conventional magnetic susceptibility measurements (|J|<1 cm~(-1)), and therefore simulation of second-order EPR spectra provides a simple route to providing useful imformation about the relative magnitudes of very weak spin exchange interactions which is not available any other route.
机译:已经制备了两个系列的双核配合物,其中顺磁性亚硝酰基钼(I)或氧钼(V)单元分别连接到非常长的双吡啶基或双酚盐桥联配体的任一端。第一组配合物是[{Mo〜1(Tp〜(Me,Me))(NO)Cl} _2 {μ-L}] [L = 4,4'-吡啶基)乙-1-基]-联苯; 4,4“-双(2-(4-吡啶基)乙烯-1-基]三联苯2; 4,4'-双[2-(4-吡啶基)乙烯-1-基]二苯甲酮3; 4,4' -双[2-(4-吡啶基)乙烯-1-基]苯甲醚4;或6,6'-双[2-(4-吡啶基)乙烯-1-基] -2,2'-联吡啶5)。第二系列络合物为[{Mo〜v(Tp〜(Me,Me))(O)Cl} _2(μ-L)](H_2L = HOC_6H_4OC(S)OC_6H_4OH 6; HOC_6H_4OS(O)OC_6H_4OH 7;或HOC_6H_4OC(O)-C_6H_4C(O)OC_6H_4OH 8,在每种情况下均用全对位取代C_6H_4单元)在许多情况下,远程顺磁中心之间的非常弱的自旋交换相互作用会导致二阶EPR光谱,因为J |≈A(其中J是交换耦合常数,A是电子-核超精细耦合)。在这种情况下,EPR谱的外观很复杂,并且对J幅值的微小变化敏感,可以利用通过将测得的光谱与使用一定范围的| J |的阀算出的计算机模拟相比较,可以估算| J |的值。按长度(1,| J |> = 4000),2(1000),3(150),4(43),5(| J | <= 10 MHz)的顺序增加和桥接配体的取代方式。对于第二系列的配合物,6和7都给出了| J | = 2000 MHz的二阶光谱,而8个桥联配体更长的情况下| J | <= 10 MHz。至关重要的是,这些自旋交换相互作用太弱而无法通过常规磁化率测量来确定(| J | <1 cm〜(-1)),因此对二阶EPR光谱的仿真为提供有用的信息提供了一条简单的途径。关于非常弱的自旋交换相互作用的相对幅度,这是其他任何途径都没有的。

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