首页> 外文期刊>Inorganica Chimica Acta >Synthesis, structure and photocatalytic activity of a remarkably bent, cofacial ethene-linked diiron (III) μ-oxobisporphyrin
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Synthesis, structure and photocatalytic activity of a remarkably bent, cofacial ethene-linked diiron (III) μ-oxobisporphyrin

机译:显着弯曲的,与乙烯表面连接的二铁(III)μ-氧代双卟啉的合成,结构和光催化活性

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Synthesis and characterization of cis and trans 1,2-bis[Chloroiron(III) 5-(2,3,7,8,12,13,17,18-octaethylporphyrinyl)]ethenes are described. Upon treatment with 5% NaOH, cis form of the molecule immediately converts to remarkably bent diiron (III)-μ-oxo bisporphyrin which transforms to cis bisChloroFe(III)porphyrin again by the addition of 5% HCl. This facile transformation is reversible with sharp change in color in which the bisporphyrin platform 'open' and 'close' its binding pockets with very high vertical flexibility in a single molecular framework. Single crystal X-ray structural characterization reveals cis diiron(III)-μ-oxo bisporphyrin in which Fe-O-Fe unit is remarkable bent with 150.9(2)° angle. Two porphyrin rings in the molecule are not slipped but face-to-face in a fully eclipsed geometry and are placed so close that some of the carbon atoms from each of the macrocycles are driven to be essentially less than the van der Waals contacts (<3.4). Two rings in the oxo-bridged dimer also make the interplanar angle of 27.7° instead of expected angle of 60° due to the bridging alkenic bond. EPR, ~1H NMR and M?ssbauer spectral data are indicative of strong anti-ferromagnetic coupling between two high-spin iron(III) centers via bridging oxo group. The complex catalyzes the rapid photoinduced oxygenation of phosphites under mild condition using aerial O_2. Electrochemical data reveals that the diiron(III)-μ-oxo bisporphyrin in dichloromethane undergoes four reversible/quasi-reversible one electron oxidation and one electron reductions. The presence of two porphyrin macrocycles within a short distance in the μ-oxo species makes the porphyrin core highly nonplanar and more electron rich that might responsible for easier oxidations compared to [Fe(OEP)]_2O.
机译:描述了顺式和反式1,2-双[氯代亚铁(III)5-(2,3,7,8,12,13,17,18-八乙基卟啉基)]乙烯的合成和表征。用5%NaOH处理后,分子的顺式形式立即转化为明显弯曲的二铁(III)-μ-氧代双卟啉,再通过添加5%HCl再次转化为顺式双氯铁(III)卟啉。这种简便的转化可通过颜色的急剧变化来逆转,其中双卟啉平台在单个分子框架中以很高的垂直柔韧性“打开”和“关闭”其结合腔。 X射线单晶结构表征揭示了顺式二铁(III)-μ-氧代双卟啉,其中Fe-O-Fe单元以150.9(2)°角显着弯曲。分子中的两个卟啉环没有滑移,而是以完全黯淡的几何形状面对面地放置,并且放置得如此紧密,以至于每个大环的一些碳原子被驱动成基本上小于范德华接触( 3.4)。由于桥接的烯键,在羰基桥连接的二聚体中的两个环也形成了27.7°的平面角,而不是预期的60°角。 EPR,〜1H NMR和Msssbauer光谱数据表明两个高自旋铁(III)中心之间通过桥联氧代基之间的强反铁磁耦合。该络合物在温和条件下使用空中O_2催化亚磷酸的快速光诱导氧合。电化学数据表明,二氯甲烷中的二铁(III)-μ-氧代双卟啉经历了四次可逆/准可逆的一次电子氧化和一次电子还原。在μ-氧代物种中,短距离内存在两个卟啉大环,使得卟啉核高度非平面且电子丰富,与[Fe(OEP)] _ 2O相比,可能更易于氧化。

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