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Group 4 metalloporphyrin diolato complexes and catalytic application of metalloporphyrins and related transition metal complexes

机译:第4族金属卟啉二醇基配合物及其催化应用

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摘要

In this work, the first examples of group 4 metalloporphyrin 1,2-diolato complexes were synthesized through a number of strategies. In general, treatment of imido metalloporphyrin complexes, (TTP)M=NR, (M = Ti, Zr, Hf), with vicinal diols led to the formation of a series of diolato complexes. Alternatively, the chelating pinacolate complexes could be prepared by metathesis of (TTP)MCl 2 (M = Ti, Hf) with disodium pinacolate. These complexes were found to undergo C-C cleavage reactions to produce organic carbonyl compounds.;For titanium porphyrins, treatment of a titanium(II) alkyne adduct, (TTP)Ti(eta 2-PhC≡CPh), with aromatic aldehydes or aryl ketones resulted in reductive coupling of the carbonyl groups to produce the corresponding diolato complexes. Unreactive aliphatic aldehydes or ketones could be incorporated into a diolato complex on reaction with a reactive precursor, (TTP)Ti[O(Ph) 2C(Ph)2O] to provide unsymmetrical diolato complexes. In addition, an enediolato complex (TTP)Ti(OCPhCPhO) was obtained from the reaction of (TTP)Ti(eta2-PhC≡CPh) with benzoin.;Titanium porphyrin diolato complexes were found to be intermediates in the (TTP)Ti=O-catalyzed cleavage reactions of vicinal diols, in which atmospheric oxygen was the oxidant. Furthermore, (TTP)Ti=O was capable of catalyzing the oxidation of benzyl alcohol and a alpha-hydroxy ketones to benzaldehyde and alpha-diketones, respectively. Other high valent metalloporphyrin complexes also can catalyze the oxidative diol cleavage and the benzyl alcohol oxidation reactions with dioxygen.;A comparison of Ti(IV) and Sn(IV) porphyrin chemistry was undertaken. While chelated diolato complexes were invariably obtained for titanium porphyrins on treatment with 1,2-diols, the reaction of vicinal diols with tin porphyrins gave a number of products, including mono-, bis-alkoxo, and chelating diolato complexes, depending on the identity of diols and the stoichiometry employed. Tin porphyrin complexes also promoted the oxidative cleavage of vicinal diols and the oxidation of alpha-ketols to alpha-diketones with dioxygen.;In extending the chemistry of metalloporphyrins and analogous complexes, a series of chiral tetraaza macrocyclic ligands and metal complexes were synthesized. Examination of iron(II) complexes showed that they efficiently catalyzed the cyclopropanation of styrene by diazo reagents. Good yields and high diastereoselectivity were obtained with modest enantioselectivity. A rationalization of the stereoselectivity was presented on the basis of structural factors in a carbene intermediate.
机译:在这项工作中,通过多种策略合成了第4组金属卟啉1,2-二醇基复合物的第一个实例。通常,用邻位二醇处理亚氨基金属卟啉复合物(TTP)M = NR,(M = Ti,Zr,Hf)导致形成一系列二醇基复合物。或者,可以通过将(TTP)MCl 2(M = Ti,Hf)与松果酸二钠复分解来制备螯合松果酸络合物。发现这些络合物经过CC裂解反应生成有机羰基化合物。;对于钛卟啉,用芳香醛或芳基酮处理钛(II)炔烃加合物(TTP)Ti(eta2-PhC≡CPh)。在羰基的还原偶联中产生相应的二醇基络合物。在与反应性前体(TTP)Ti [O(Ph)2C(Ph)2O]反应时,可以将未反应的脂族醛或酮掺入二醇基络合物中,以提供不对称的二醇基络合物。另外,从(TTP)Ti(eta2-PhC≡CPh)与安息香的反应中获得了烯二醇基络合物(TTP)Ti(OCPhCPhO)。发现钛卟啉二醇基络合物是(TTP)Ti =邻二醇的O催化裂解反应,其中大气中的氧气为氧化剂。此外,(TTP)Ti = O能够催化苄醇和α-羟基酮分别氧化为苯甲醛和α-二酮。其他高价金属卟啉配合物也可以催化氧化二醇的裂解和与双氧的苄醇氧化反应。进行了Ti(IV)和Sn(IV)卟啉化学的比较。尽管用1,2-二醇处理钛卟啉时总是获得螯合的二醇基络合物,但邻位二醇与锡卟啉的反应产生了多种产物,包括单-,双-烷氧基和螯合的二醇基络合物,具体取决于身份的二醇和所用的化学计量。卟啉锡配合物还促进了邻二醇的氧化裂解以及用双氧将α-酮醇氧化为α-二酮。在扩展金属卟啉和类似配合物的化学过程中,合成了一系列手性四氮杂大环配体和金属配合物。铁(II)配合物的检查表明,它们通过重氮试剂有效地催化了苯乙烯的环丙烷化。以适度的对映选择性获得了良好的产率和高的非对映选择性。根据卡宾中间体的结构因素,提出了立体选择性的合理化方法。

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    Du, Guodong;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 en
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