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Synthesis, characterization, and spectroscopic analysis of antiaromatic benzofused metalloporphyrins

机译:抗芳香族苯并金属卟啉的合成,表征和光谱分析

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A two-electron oxidation of the Cu ~(II) (9) and Zn ~(II) (12) complexes of tetraphenyltetrabenzoporphyrin (TPTBP) results in the formation of stable antiaromatic [(TPTBP)Cu ~(II)(H _2O)] ~(2+)·2 [SbF _6] ~- (10) and [(TPTBP)Zn ~(II)(H _2O) _2] ~(2+)·2 [SbF _6] - (13) with 16π electrons on the inner ligand perimeter. X-ray structures of the parent TPTBP complexes, the dications, and singly oxidized species [(TPTBP)Cu ~(II)] ~(·+)[SbF _6] ~- (11) reveal that the use of TPTBP rather than a porphyrin ligand reduces the degree of nonplanarity in the 16π-electron species relative to the parent 18π complex. Significant high-field shifts of the ~1H NMR signals of the outer ring protons and large positive values in calculations of nucleus-independent chemical shifts on the central cavity of the porphyrin ring provide unambiguous evidence for the antiaromatic character of the 16π Zn ~(II) species. A combination of magnetic circular dichroism spectroscopic studies and TD-DFT calculations on both the Zn II and Cu ~(II) species demonstrates that the main electronic bands of the dicationic species can be readily assigned by using Michl's 4N perimeter model. Femtosecond transient absorption studies clearly demonstrated that the number of π electrons on the inner ligand perimeter and the configuration of the central metal ion play a critical role in the excited-state relaxation dynamics. Redox potentials for conversion between the 16π, 17π, and 18π systems were measured by cyclic voltammetry in dichloromethane and benzonitrile, and UV/Vis spectra of each oxidation/reduction product were monitored by thin-layer spectroelectrochemistry.
机译:四苯基四苯并卟啉(TPTBP)的Cu〜(II)(9)和Zn〜(II)(12)配合物的两电子氧化导致形成稳定的抗芳族[[TPTBP] Cu〜(II)(H _2O) ]〜(2+)·2 [SbF _6]〜-(10)和[(TPTBP)Zn〜(II)(H _2O)_2]〜(2+)·2 [SbF _6]-(13)具有16π电子在内配体的周边。 TPTBP母体的X射线结构,药物和单氧化种[(TPTBP)Cu〜(II)]〜(·+)[SbF _6]〜-(11)显示使用TPTBP而不是TPTBP相对于母体18π络合物,卟啉配体降低了16π电子物种的非平面度。外环质子的〜1H NMR信号的显着高场位移和卟啉环中心腔上与核无关的化学位移的计算中的大正值,为16πZn〜(II)的抗芳烃特性提供了明确的证据。 )的物种。对Zn II和Cu〜(II)物种的磁性圆二色性光谱研究和TD-DFT计算的结合表明,可以通过使用Michl的4N周长模型轻松分配特定化学物种的主要电子带。飞秒瞬态吸收研究清楚地表明,内配体周缘上的π电子数量和中心金属离子的构型在激发态弛豫动力学中起着关键作用。通过循环伏安法在二氯甲烷和苄腈中测量在16π,17π和18π系统之间转换的氧化还原电势,并通过薄层光谱电化学监测每种氧化/还原产物的UV / Vis光谱。

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