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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Light- or oxidation-triggered CO release from [Mn-I(CO)(3)(kappa(3)-L)] complexes: reaction intermediates and a new synthetic route to [Mn-2(III/IV) (mu-O)(2)(L)(2)] compounds
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Light- or oxidation-triggered CO release from [Mn-I(CO)(3)(kappa(3)-L)] complexes: reaction intermediates and a new synthetic route to [Mn-2(III/IV) (mu-O)(2)(L)(2)] compounds

机译:从[Mn-I(CO)(3)(kappa(3)-L)]复合物中释放光或氧化触发的CO:反应中间体和合成新的[Mn-2(III / IV)(mu- O)(2)(L)(2)]化合物

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摘要

The reaction products and intermediates of the three CO-releasing manganese(I) coordination compounds [Mn(tpm)(CO)(3)](+), [Mn(bpza)(CO)(3)] and [Mn(tpa)(CO)(3)](+) were analysed by combining IR-spectroscopy, electrochemical measurements and single-crystal XRD. The intermediate formation of manganese(I) biscarbonyl compounds and the rather facile oxidation of these species were identified as key reaction steps that accompany CO liberation. For the use of [Mn-I(CO)(3)] complexes as light-triggered CO sources, the results indicate that in this case photo-and redox-chemistry seem to be strongly coupled which could be important and potentially even useful in the pharmacological context. Additionally, one has to be aware of the fact that [Mn-II(kappa(3)-L)(solv)(3)](2+) complexes, the primary reaction products after CO substitution, are able to bind to proteins, which was demonstrated using bovine serum albumin as a model. And finally it could be shown that the CO-release reactions can be used as a new synthetic route to prepare multinuclear mu-oxido-bridged manganese complexes: the mixed-valence compound [Mn-2(III/IV)(mu-O)(2)(tpa)(2)](3+) could be prepared in a single step from [Mn(tpa)(CO)(3)](+) via photo- or electrochemically induced CO substitution.
机译:三种释放CO的锰(I)配位化合物[Mn(tpm)(CO)(3)](+),[Mn(bpza)(CO)(3)]和[Mn(tpa)的反应产物和中间体)(CO)(3)](+)通过结合红外光谱,电化学测量和单晶XRD分析。锰(I)双羰基化合物的中间形成和这些物质的相当容易的氧化被确定为伴随CO释放的关键反应步骤。对于[Mn-I(CO)(3)]配合物作为光触发CO源的使用,结果表明,在这种情况下,光化学和氧化还原化学似乎是强耦合的,这可能很重要,甚至可能对药理背景。此外,必须意识到以下事实:CO取代后的主要反应产物[Mn-II(kappa(3)-L)(solv)(3)](2+)复合物能够与蛋白质结合,以牛血清白蛋白为模型进行了验证。最后可以证明,CO释放反应可作为制备多核mu-氧化桥联锰配合物的新合成途径:混合价化合物[Mn-2(III / IV)(mu-O) (2)(tpa)(2)](3+)可以通过光或电化学诱导的CO取代从[Mn(tpa)(CO)(3)](+)一步制备。

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