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通过表面增强振动光谱法探测电极上铁绞刑架配合物的2配位球控制电子转移。

2 coordination sphere controlled electron transfer of iron hangman complexes on electrodes probed by surface enhanced vibrational spectroscopy.

作者信息

Ly H K, Wrzolek P, Heidary N, Götz R, Horch M, Kozuch J, Schwalbe M, Weidinger I M

机构信息

Department of Chemistry , Technische Universität Berlin , PC14, Straße des 17. Juni 135 , D-10623 Berlin , Germany . Email:

Department of Chemistry , Humboldt Universität zu Berlin , Brook-Taylor-Str. 2 , D-12489 Berlin , Germany . Email:

出版信息

Chem Sci. 2015 Dec 1;6(12):6999-7007. doi: 10.1039/c5sc02560e. Epub 2015 Sep 7.

Abstract

Iron hangman complexes exhibit improved catalytic properties regarding O and HO reduction, which are attributed to the presence of a proton donating group in defined vicinity of the catalytic metal centre. Surface enhanced resonance Raman (SERR) and IR (SEIRA) spectro-electrochemistry has been applied concomitantly for the first time to analyse such iron hangman porphyrin complexes attached to electrodes in aqueous solution. While the SERR spectra yield information about the redox state of the central iron, the SEIRA spectra show protonation and deprotonation events of the 2 coordination sphere. To investigate the influence of a proton active hanging group on the heterogeneous electron transfer between the iron porphyrin and the electrode, two hangman complexes with either an acid or ester functional group were compared. Using time resolved SERR spectroscopy the electron transfer rates of both complexes were determined. Complexes with an acid group showed a slow electron transfer rate at neutral pH that increased significantly at pH 4, while complexes with an ester group exhibited a much faster, but pH independent rate. SEIRA measurements were able to determine directly for the first time a p value of 3.4 of a carboxylic hanging group in the immobilized state that shifted to 5.2 in DO buffer solution. The kinetic data showed an increase of the heterogeneous electron transfer rate with the protonation degree of the acid groups. From these results, we propose a PCET which is strongly modulated by the protonation state of the acid hanging group hydrogen bond interactions.

摘要

铁绞刑架配合物在O和HO还原方面表现出改进的催化性能,这归因于在催化金属中心的特定附近存在一个质子供体基团。表面增强共振拉曼(SERR)和红外(SEIRA)光谱电化学首次被同时应用于分析附着在水溶液电极上的此类铁绞刑架卟啉配合物。虽然SERR光谱提供了关于中心铁的氧化还原状态的信息,但SEIRA光谱显示了第二配位层的质子化和去质子化事件。为了研究质子活性悬挂基团对铁卟啉与电极之间异质电子转移的影响,比较了两种带有酸或酯官能团的绞刑架配合物。使用时间分辨SERR光谱法测定了两种配合物的电子转移速率。带有酸基团的配合物在中性pH下显示出缓慢的电子转移速率,在pH 4时显著增加,而带有酯基团的配合物表现出快得多但与pH无关的速率。SEIRA测量首次能够直接确定固定状态下羧基悬挂基团的p值为3.4,在DO缓冲溶液中该值变为5.2。动力学数据表明异质电子转移速率随着酸基团的质子化程度而增加。从这些结果中,我们提出了一种由酸悬挂基团的质子化状态 氢键相互作用强烈调节的质子耦合电子转移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/130f/5947519/f41e9ea5dce8/c5sc02560e-f1.jpg

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