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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Organometallic chemistry of azuliporphyrins: Synthesis, spectroscopy, electrochemistry, and structural characterization of nickel(II), palladium(II), and platinum(II) complexes of azuliporphyrins
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Organometallic chemistry of azuliporphyrins: Synthesis, spectroscopy, electrochemistry, and structural characterization of nickel(II), palladium(II), and platinum(II) complexes of azuliporphyrins

机译:氮杂卟啉的有机金属化学:氮杂卟啉的镍(II),钯(II)和铂(II)配合物的合成,光谱,电化学和结构表征

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Four azuliporphyrins, two meso-unsubstituted and two meso-tetraaryl substituted, were investigated in the synthesis of novel organometallic compounds. The meso-unsubstituted or "etio" series azuliporphyrins 8 reacted with nickel(11) acetate, palladium(11) acetate, and platinum(11) chloride in DMF to give the corresponding chelates 14-16, where the metal cation lies within the macrocyclic cavity and binds to all three nitrogens and the internal carbon atom. The newly available meso-tetraarylazuliporphyrins 13 similarly afforded the corresponding nickel(II), palladium(11), and platinum(II) complexes, 17-19, respectively. The new organometallic complexes are stable nonpolar compounds and were fully characterized spectroscopically and by mass spectrometry. The UV-vis data indicate that these complexes, in common with the parent azuliporphyrin system 8, do not possess porphyrin-type aromaticity. However, electron donation from the azulene unit can give rise to dipolar resonance contributors that provide a degree of carbaporphyrin-type aromatic character. The platinum(II) azuliporphyrins 16 gave noteworthy proton NMR spectra where the meso-protons showed satellite peaks due to transannular coupling to platinum-195. The pyrrolic protons of the platinum(11) meso-tetraarylazuliporphyrin 19b also showed similar satellite peaks due to coupling from the platinum-195 isotope. The electrochemistry of free base tetraphenylazuliporphyrin 13a and the related nickel(II) and palladium(11) complexes was investigated using cyclic voltammetry, and these data indicate that metal coordination improves the reversibility of the ligand-based oxidations. Nickel(II) azuliporphyrin 14a and palladium(11) tetrakis(4-chlorophenyl)azuliporphyrin 18b were also structurally characterized by X-ray crystallography. The macrocyclic core of the palladium(11) complex 18b was significantly more planar than the nickel(II) derivative 14b, and this difference was attributed to the better size match between the azuliporphyrin cavity and the larger palladium(11) ion. The straightforward synthesis of metalloazuliporphyrins under mild conditions, and their interesting spectroscopic, electrochemical, and structural features, demonstrates that the azuliporphyrin system holds great promise as a platform for organometallic chemistry. [References: 54]
机译:在新型有机金属化合物的合成中,研究了四个氮杂卟啉,两个未被取代的内消旋和两个被取代的四个四芳基。中观未取代或“ etio”系列天青卟啉8与DMF中的乙酸镍(11),乙酸钯(11)和氯化铂(11)反应生成相应的螯合物14-16,其中金属阳离子位于大环内并与所有三个氮原子和内部碳原子结合。类似地,新获得的内消旋-四芳基金卟啉13分别提供了相应的镍(II),钯(11)和铂(II)配合物17-19。新的有机金属配合物是稳定的非极性化合物,并通过质谱和质谱法进行了全面表征。 UV-vis数据表明,与母体金卟啉系统8共同的这些络合物不具有卟啉型芳香性。然而,来自氮杂单元的电子给予可引起偶极共振贡献者,其提供了一定程度的碳卟啉类芳香特性。铂(II)铜硫卟啉16给出了值得注意的质子NMR光谱,其中中质子由于与195的跨环耦合而显示出卫星峰。铂(11)内消旋-四芳基az卟啉19b的吡咯质子也显示出相似的卫星峰,这是由于铂-195同位素的耦合所致。使用循环伏安法研究了游离碱四苯基金卟啉13a以及相关的镍(II)和钯(11)配合物的电化学,这些数据表明金属配位提高了基于配体的氧化的可逆性。还通过X射线晶体学对镍(II)金卟啉14a和钯(11)四(4-氯苯基)金卟啉18b进行了结构表征。钯(11)络合物18b的大环核比镍(II)衍生物14b的平面明显更平坦,并且该差异归因于金刚卟啉腔和较大的钯(11)离子之间的尺寸匹配更好。在温和的条件下直接合成金属氮杂卟啉及其有趣的光谱,电化学和结构特征,表明天青卟啉体系作为有机金属化学的平台具有广阔的前景。 [参考:54]

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