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Reduction of CO_2 by Pyridine Monoimine Molybdenum Carbonyl Complexes: Cooperative Metal–Ligand Binding of CO_2

机译:吡啶单亚胺钼羰基配合物减少CO_2:金属与金属的配位结合

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摘要

[(^(Ar)PMI)Mo(CO)_4] complexes (PMI=pyridine monoimine; Ar=Ph, 2,6-di-iso-propylphenyl) were synthesized and their electrochemical properties were probed with cyclic voltammetry and infrared spectroelectrochemistry (IR-SEC). The complexes undergo a reduction at more positive potentials than the related [(bipyridine)Mo(CO)_4] complex, which is ligand based according to IR-SEC and DFT data. To probe the reaction product in more detail, stoichiometric chemical reduction and subsequent treatment with CO_2 resulted in the formation of a new product that is assigned as a ligand-bound carboxylate, [(^(iPr2Ph)PMI)Mo(CO)_3(CO_2)]^(2-), by NMR spectroscopic methods. The CO_2 adduct [(^(iPr2Ph)PMI)Mo(CO)_3(CO_2)]^(2-) could not be isolated and fully characterized. However, the C_C coupling between the CO_2udmolecule and the PDI ligand was confirmed by X-ray crystallographic characterization of one of the decomposition products of [(^(iPr2Ph)PMI)Mo(CO)_3(CO_2)])^(2-).
机译:合成了[(^(Ar)PMI)Mo(CO)_4]配合物(PMI =吡啶单亚胺; Ar = Ph,2,6-二异丙基苯基),并通过循环伏安法和红外光谱电化学对它们的电化学性质进行了研究( IR-SEC)。与相关的[(联吡啶)Mo(CO)_4]复合物相比,该复合物的还原电位更高,根据IR-SEC和DFT数据,该复合物是基于配体的。为了更详细地探测反应产物,化学计量化学还原和随后用CO_2处理导致形成新产物,该产物被指定为配体结合的羧酸盐[[^(iPr2Ph)PMI)Mo(CO)_3(CO_2 )] ^(2-),通过NMR光谱法。无法分离出CO_2加合物[(^(iPr2Ph)PMI)Mo(CO)_3(CO_2)] ^(2-)。然而,通过[[^(iPr2Ph)PMI)Mo(CO)_3(CO_2)] ^(2)的分解产物之一的X射线晶体学表征证实了CO_2 大分子与PDI配体之间的C_C偶联。 -)。

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