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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis, characterization and molecular structures of six-coordinate manganese nitrosyl porphyrins
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Synthesis, characterization and molecular structures of six-coordinate manganese nitrosyl porphyrins

机译:六配位亚硝基锰卟啉的合成,表征及分子结构

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Manganese(II) porphyrins are isoelectronic with iron(III) porphyrins, and previously reported work suggests that manganese nitrosyl porphyrins are good structural models for their kinetically unstable and biologically relevant ferric-NO analogues. We have prepared a new set of six-coordinate manganese nitrosyl porphyrins of the general form (por)Mn(NO)(L)(por = TTP, T(p-OCH_3)PP; L = piperidine, methanol, 1-methylimidazole) in moderate to high yields. The (por)Mn(NO)(pip) complexes were prepared from the reductive nitrosylation of the (por)MnCl compounds with NO in the presence of piperidine. The IR spectra of the (por)Mn(NO)(pip) compounds as KBr pellets show new strong bands at 1746 cm~(-1)(for TTP) and 1748 cm~(-1)(for (T(p-OCH_3)PP) due to the NO ligands. Attempted crystallization of one of these compounds (por = TTP) from dichloromethane-methanol resulted in the generation of the methanol complex (TTP)Mn(NO)(CH3OH). Reaction of the (por)Mn(NO)(pip) compounds with excess 1-methylimidazole gave the (por)Mn(NO)(1-MeIm) derivatives in good yields. The IR spectra of these compounds show NO bands that are ~12 cm~(-1) lower than those of the (por)Mn(NO)(pip) precursors, indicative of greater Mn→NO π-backdonation in the 1-MeIm derivatives. X-Ray crystal structures of three of these compounds, namely (TTP)Mn(NO)(CH_3OH), (TTP)Mn(NO)(1-MeIm) and (T(p-OCH_3)PP)Mn(NO)(1-MeIm) were obtained, and reveal that the NO ligands in these complexes are linear.
机译:锰(II)卟啉与铁(III)卟啉是等电的,以前的报道表明锰亚硝酰基卟啉是其动力学不稳定和生物学相关的三价铁类似物的良好结构模型。我们准备了一套新的六配位亚硝酸锰卟啉,其形式一般为(por)Mn(NO)(L)(por = TTP,T(p-OCH_3)PP; L =哌啶,甲醇,1-甲基咪唑)中等至高产。 (por)Mn(NO)(pip)配合物是在哌啶存在下,由(por)MnCl化合物与NO的还原亚硝化反应制得的。以KBr颗粒形式存在的(por)Mn(NO)(pip)化合物的红外光谱在1746 cm〜(-1)(对于TTP)和1748 cm〜(-1)(对于(T(p- OCH_3)PP)是由于NO配体引起的。尝试从二氯甲烷-甲醇中结晶其中一种化合物(por = TTP),导致生成甲醇络合物(TTP)Mn(NO)(CH3OH)。含过量1-甲基咪唑的)Mn(NO)(pip)化合物以良好的收率得到(por)Mn(NO)(1-MeIm)衍生物,这些化合物的红外光谱显示NO谱带约为〜12 cm〜(- 1)低于(por)Mn(NO)(pip)前体,表明1-MeIm衍生物中的Mn→NOπ-背键化更大。这三种化合物(即TTP)的X射线晶体结构获得了Mn(NO)(CH_3OH),(TTP)Mn(NO)(1-MeIm)和(T(p-OCH_3)PP)Mn(NO)(1-MeIm),并揭示了其中的NO配体络合物是线性的。

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