首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis, characterization, and molecular structures of diethylnitrosamine metalloporphyrin complexes of iron, ruthenium, and osmium
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Synthesis, characterization, and molecular structures of diethylnitrosamine metalloporphyrin complexes of iron, ruthenium, and osmium

机译:铁,钌和的二乙基亚硝胺金属卟啉配合物的合成,表征和分子结构

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摘要

Diethylnitrosamine reacts with [(TPP)Fe(THF)(2)]ClO4 (TPP = 5,10,15,20-tetraphenylporphyrinato dianion) in toluene to generate the bis-nitrosamine complex, [(TPP)Fe(Et2NNO)(2)]ClO4, in 96% isolated yield. The related [(TTP)Fe(Et2NNo)(2)]SbF6 (TTP = 5,10,15,20-tetra-p-tolylporphyrinato dianion) complex is prepared in 70% isolated yield via a similar reaction in CH2Cl2. Reaction of [(TPP)Fe(Et2NNO)(2)]ClO4 in CH2Cl2 with NO gas results in the displacement of one of the Et2NNO ligands to give the air-sensitive and thermally sensitive [(TPP)Fe(NO)-(E(t)2NNO)]ClO4 derivative. Reaction of (OEP)Ru(CO) (OEP = 2,3,7,8,12,13,17,18-octaethylporphyrinato dianion) with NOBF4 in CH2Cl2 gives [(OEP)Ru(NO)(H2O)]BF4 as the final isolated product (after exposure to air) in 71% isolated yield. The aqua ligand is then displaced by Et2NNO in CH2Cl2 to give [(OEP)Ru(NO)(Et2NNO)-BF4 in 82% isolated yield. The valence isoelectronic (OEP)Ru(CO)(Et2NNO) compound is prepared in 71% isolated yield by the addition of excess Et2NNO to (OEP)Ru(CO) in CH2Cl2. The nitrosyl amine complex [(OEP)Ru(NO)(H2O)]BF4 is prepared (i) in 78% yield by diethylamine addition to [(OEP)Ru(NO)(H2O)]BF4 or (ii) in 71% isolated yield by diethylamine addition to [(OEP)Ru(NO)(Et2NNO)]BF4. The osmium nitrosamine complexes, (TTP)Os(CO)(Et2NNO) and (OEP)Os(CO)(Et2NNO), are prepared in 74% and 66% yields, respectively, by diethylnitrosamine addition to the precursor (porphyrin)Os(CO) compounds in CH2Cl2. The nitrosyl [(OEP)Os(NO)(Et2NNO)]BF4 derivative is prepared in quantitative yield (by IR and H-1 NMR spectroscopy) by the reaction of (OEP)Os(CO)(Et2NNO) with NOBF4. Labeling studies using (NOBF4)-N-15, (Et2NNO)-N-15, and (Et2NNO)-O-18 have been used to assign the nitrosyl and nitrosamine bands in the IR spectra of several of the complexes. The solid-state structures of [(TPP)Fe(THF)(2)]ClO4, [(TPP)Fe(Et2NNO)(2)]ClO4, [(OEP)Ru(NO)(H2O)]BF4, (OEP)Ru(CO)(Et-2-NNO), and (TTP)Os(CO)(Et2NNO) have also been determined by single-crystal X-ray diffraction. The Et2NNO ligands display a rare eta(1)-O binding mode in all three nitrosamine complexes. [References: 98]
机译:二乙基亚硝胺在甲苯中与[(TPP)Fe(THF)(2)] ClO4(TPP = 5,10,15,20-四苯基卟啉对二阴离子)反应生成双亚硝胺络合物[[TPP)Fe(Et2NNO)(2 )] ClO4,分离产率为96%。相关的[(TTP)Fe(Et2NNo)(2)] SbF6(TTP = 5,10,15,20-四-对-甲苯基卟啉酮二价阴离子)络合物是通过在CH2Cl2中的相似反应以70%分离的产率制备的。 [(TPP)Fe(Et2NNO)(2)] ClO4在CH2Cl2中与NO的反应导致Et2NNO配体之一的置换,从而获得对空气敏感和热敏感的[(TPP)Fe(NO)-(E (t)2 NNO)] ClO 4衍生物。 (OEP)Ru(CO)(OEP = 2,3,7,8,12,13,17,18-八乙基卟啉二价阴离子)与NOBF4在CH2Cl2中的反应得到[(OEP)Ru(NO)(H2O)] BF4为最终分离出的产品(暴露于空气后)分离出的收率为71%。然后用CH 2 Cl 2中的Et 2 NNO置换水族配体,以82%的分离产率得到[(OEP)Ru(NO)(Et 2 NNO)-BF 4。通过向CH2Cl2中的(OEP)Ru(CO)中添加过量的Et2NNO,可以分离出71%的化合价电子(OEP)Ru(CO)(Et2NNO)化合物。 (i)通过将二乙胺加到[(OEP)Ru(NO)(H2O)] BF4中制得亚硝胺复合物[(OEP)Ru(NO)(H2O)] BF4(i),或(ii)以71%的产率制备通过将二乙胺添加到[(OEP)Ru(NO)(Et2NNO)] BF4中分离得到产率。 di亚硝胺络合物(TTP)Os(CO)(Et2NNO)和(OEP)Os(CO)(Et2NNO)的制备方法是,将二乙基亚硝胺加到前体(卟啉)Os中,分别得到74%和66%的产率。 CH2Cl2中的CO)化合物。通过(OEP)Os(CO)(Et2NNO)与NOBF4的反应以定量收率(通过IR和H-1 NMR光谱法)制备亚硝酰基[(OEP)Os(NO)(Et2NNO)] BF4衍生物。使用(NOBF4)-N-15,(Et2NNO)-N-15和(Et2NNO)-O-18进行的标记研究已用于在几种配合物的IR光谱中指定亚硝酰基和亚硝胺谱带。 [(TPP)Fe(THF)(2)] ClO4,[(TPP)Fe(Et2NNO)(2)] ClO4,[(OEP)Ru(NO)(H2O)] BF4,(OEP还通过单晶X射线衍射测定了Ru(CO)(Et-2-NNO)和(TTP)Os(CO)(Et2NNO)。 Et2NNO配体在所有三个亚硝胺复合物中显示一种罕见的eta(1)-O结合模式。 [参考:98]

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