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Analysis of anisotropic effects in trinuclear metal carbonyl compounds by visualization of through-space NMR shielding

机译:通过空间核磁共振屏蔽可视化分析三核羰基金属化合物的各向异性效应

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摘要

Through-space NMR shieldings were calculated for trinuclear metal-carbonyl compounds [M_3(CO)_(12)] (M = Fe, Ru, Os), employing the nucleus-independent chemical shift approach. The through-space shieldings were visualized as a contour plot of iso-chemical shielding surfaces, and were applied to quantify the overall anisotropic effect of the carbonyl groups, as well as to identify the influence of the transition metal on the scopes of the corresponding anisotropy cones. The shielding surfaces show that the anisotropic effect of the carbonyl groups at equatorial positions changes depending on the metal. This effect was associated with π-backdonation from the metal to the carbonyl groups in that position, in agreement with geometric data as well as calculated NMR parameters. Therefore, visualization of the through-space NMR shieldings of trinuclear metal-carbonyl compounds of group 8 is able to reflect the distinct arrangements of the carbonyl groups in these organometallic compounds.
机译:使用与核无关的化学位移方法,计算了三核羰基金属化合物[M_3(CO)_(12)](M = Fe,Ru,Os)的全空间NMR屏蔽。贯穿空间的屏蔽可视化为等化学屏蔽表面的等高线图,并用于量化羰基的整体各向异性效应,并确定过渡金属对相应各向异性范围的影响视锥细胞。屏蔽表面表明,在赤道位置的羰基的各向异性效应根据金属而变化。这种作用与在该位置从金属到羰基的π还原有关,与几何数据以及计算出的NMR参数一致。因此,第8组三核金属羰基化合物的全空间NMR屏蔽可视化能够反映这些有机金属化合物中羰基的不同排列。

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