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Electrochemistry and spectroelectrochemistry of iron porphyrins in the presence of nitrite

机译:亚硝酸盐存在下铁卟啉的电化学和光谱电化学

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The reaction of nitrite with ferric and ferrous porphyrins was examined using visible, infrared and NMR spectroscopy. Solutions of either ferric or ferrous porphyrin were stable in the presence of nitrite, with only complexation reactions being observed. Under voltammetric conditions, though, a rapid reaction between nitrite and iron porphyrins was observed to form the nitrosyl complex, Fe(P)(NO), where P = porphyrin. The products of the reduction of ferric porphyrins in the presence of nitrite were confirmed by visible spectroelectrochemistry to be Fe(P)(NO) and [Fe(P)](2)O. Visible, NMR and infrared spectroscopy were used to rule out the formation of Fe(P)(NO) by the iron-catalyzed disproportionation of nitrite. A reaction between iron porphyrins and nitrite only occurred by the presence of both oxidation states (ferric/ferrous). The kinetics of the reaction were monitored by visible spectroscopy, and the reaction was found to be first-order with respect to Fe(OEP)(CI) and Fe(OEP). The products were the same as those observed in the spectroelectrochemical experiment. The rate was not strongly dependent upon the concentration of nitrile, indicating that the coordinated, not the free nitrite, was the reaction species. The kinetics observed were consistent with a mixed oxidation state nitrite-bridged intermediate, which carried out the oxygen transfer reaction from nitrite to the iron porphyrin. The effect of nitrite coordination on the reaction rate was examined. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 19]
机译:使用可见光,红外和NMR光谱检查了亚硝酸盐与铁和亚铁卟啉的反应。铁或亚铁卟啉的溶液在亚硝酸盐的存在下是稳定的,仅观察到络合反应。但是,在伏安条件下,亚硝酸盐和卟啉铁之间会发生快速反应,形成亚硝酰基配合物Fe(P)(NO),其中P =卟啉。在亚硝酸盐存在下还原铁卟啉的产物通过可见光谱电化学证实为Fe(P)(NO)和[Fe(P)](2)O。用可见光,NMR和红外光谱排除了铁催化的亚硝酸根歧化反应生成Fe(P)(NO)。卟啉铁与亚硝酸盐之间的反应仅通过两种氧化态(铁/亚铁)的存在而发生。通过可见光谱监测反应的动力学,并且发现该反应相对于Fe(OEP)(Cl)和Fe(OEP)是一级的。产物与在光谱电化学实验中观察到的产物相同。该速率与腈的浓度没有很大的关系,表明配位的而不是游离的亚硝酸盐是反应物种。观察到的动力学与亚硝酸盐桥接的混合氧化态中间体一致,该中间体进行了从亚硝酸盐到卟啉铁的氧转移反应。研究了亚硝酸盐配位对反应速率的影响。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:19]

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