首页> 外文期刊>Inorganica Chimica Acta >Hydrogen bond controlled formation of trans-dihydroxo porphyrinato platinum(IV) complexes: Synthesis, characterization and catalytic activity in olefin epoxidation
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Hydrogen bond controlled formation of trans-dihydroxo porphyrinato platinum(IV) complexes: Synthesis, characterization and catalytic activity in olefin epoxidation

机译:氢键控制的反式二氢卟啉铂(IV)配合物的形成:烯烃环氧化的合成,表征和催化活性

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A number of trans-dihydroxo porphyrinato platinum(IV) complexes, [(porp)Pt-IV(OH)(2)] have been synthesized and characterized from their platinum(II)-porphyrin precursors by spectroscopic methods. The crystal structure of the platinum complex of trans-dihydroxo-meso-tetramesitylporphyrinato platinum(IV) meta-chlorobenzoic acid ([(TMP)Pt-IV(OH)(2)](m-CBA)(2)) has also been determined. The porphyrin periphery is planar and the platinum atom has a slightly distorted octahedral environment. It must be noted that there is a very strong O-H . . . O hydrogen bond between the hydrogen atoms of mchlorobenzoic acids and the two hydroxo ligands coordinated to the platinum center. This crystal structure has been previously described by us as trans-dihydroxo-meso-tetramesitylporphyrinato platinum(VI) meta-chlorobenzoate ([(TMP)Pt-VI(OH)(2)](m-CB)(2)), but the spectroscopic data has been reinterpreted due to the contradictory +6 oxidation state for platinum. The UV-Vis and NMR spectroscopic data suggest that the porphyrin skeleton is similar to that of normal porphyrins and are also indicative of the +4 oxidation state for platinum. Cyclic voltammetry studies also indicate that PtIITMP can oxidize up to Pt-IV(TMP+.) species via three successive one-electron oxidation steps. The results of DFT studies and NBO analysis confirm that platinum has +4 oxidation state in both [(TMP) Pt(OH)(2)](m-CBA)(2) and [(TMP)Pt(OH)(2)](m-CB)(2) complexes. The catalytic activity of these porphyrin complexes has been investigated for the oxidation of various alkenes in the presence of iodosylbenzene. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经合成了许多反式-二氢卟啉铂(IV)配合物[(porp)Pt-IV(OH)(2)],并通过光谱法从它们的铂(II)-卟啉前体中进行了表征。反式-二氢-间-间-四甲硅烷基卟啉至铂(IV)间氯苯甲酸([[TMP)Pt-IV(OH)(2)](m-CBA)(2)的铂配合物的晶体结构也已确定决心。卟啉外围是平坦的,铂原子具有稍微扭曲的八面体环境。必须指出的是,O-H非常强。 。 。氯苯甲酸的氢原子与两个羟基配体之间的O氢键配位至铂中心。该晶体结构先前已被我们描述为反式-二氢-间-间-四甲氧基卟啉铂(VI)偏氯苯甲酸酯([[(TMP)Pt-VI(OH)(2)](m-CB)(2)),但由于铂的+6氧化态相互矛盾,因此重新解析了光谱数据。 UV-Vis和NMR光谱数据表明,卟啉骨架与正常卟啉的骨架相似,并且还指示了铂的+4氧化态。循环伏安法研究还表明,PtIITMP可以通过三个连续的单电子氧化步骤氧化多达Pt-IV(TMP +)物质。 DFT研究和NBO分析的结果证实,铂在[(TMP)Pt(OH)(2)](m-CBA)(2)和[(TMP)Pt(OH)(2)中都具有+4氧化态](m-CB)(2)配合物。已经研究了这些卟啉配合物在碘代苯存在下对各种烯烃氧化的催化活性。 (C)2015 Elsevier B.V.保留所有权利。

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