首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Self-Assembly of a Porphyrin Array via the Molecular Recognition Approach: Synthesis and Properties of a Cyclic Zinc(II) Porphyrin Trimer Based on Coordination and Hydrogen Bonding
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Self-Assembly of a Porphyrin Array via the Molecular Recognition Approach: Synthesis and Properties of a Cyclic Zinc(II) Porphyrin Trimer Based on Coordination and Hydrogen Bonding

机译:通过分子识别方法自组装的卟啉阵列:基于配位和氢键的环状锌(II)卟啉三聚体的合成和性能

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Self-assembly of [5-(pyrazol-4-yl)-10.20-bis(p-tolyl)-15- (1-ethoxycarbonylphenyl)porphyrinato]-zinc(II) (1), designed to have both a coordination site and a hydrogen bonding site, leads to a stable cyclic trimer array where coordination of the pyrazole nitrogen to the zinc(II) ion as well as hydrogen bonding between carbonyl oxygen and pyrazole NH holds each zinc(II) porphyrin. The recognition event for pyrazole has been confirmed preliminarily in the model studies using [5-(2-ethoxycarbonylphenyl)tris(p-tolyl)porphyrinato]-zinc(II) (3). The zinc(II) porphyrin 3 has large affinity for pyrazole due to the hydrogen bond between pyrazole and the 2-ethoxycarbonyl group in addition to the coordination bonding accompanied by the conformational change of the ethoxycarbonyl group in the coordination process. The ~1H NMR, IR, and UV-vis spectra of 1 and its ESI-MS and VPO measurements have revealed the cyclic trimer structure with an overall asociation constant of 6.0 X 10~(13) M~(-2) at 22 deg C. The contribution of the hydrogen bond to the total free energy change in trimer formation is estimated to be 7.5 kcal/mol based on a reference trimer system without a hydrogen bonding site. The trimer geometry causes characteristic exitonic interaction between porphyrin units to yield a broad Soret band which is deconvoluted into four components by UV-vis and MCD spectral analyses. Electrochemical measurements have shown that only the first ring-oxidation process proceeds stepwise in the trimer.
机译:[5-(吡唑-4-基)-10.20-双(对甲苯基)-15-(1-乙氧基羰基苯基)卟啉酮]-锌(II)的自组装,设计成既具有配位位点又具有氢键结合位点可形成稳定的环状三聚体阵列,其中吡唑氮原子与锌(II)离子的配位以及羰基氧与吡唑NH之间的氢键保持每个卟啉锌(II)。使用[5-(2-乙氧基羰基苯基)三(对甲苯基)卟啉酮]-锌(II)进行的模型研究已初步确认了吡唑的识别事件(3)。卟啉锌(II)3由于吡唑与2-乙氧基羰基之间的氢键以及配位过程中伴随乙氧基羰基构象变化的配位键,对吡唑具有较大的亲和力。 1的〜1H NMR,IR和UV-vis光谱及其ESI-MS和VPO测量结果表明,该环状三聚体结构在22度时的总缔合常数为6.0 X 10〜(13)M〜(-2)。基于不具有氢键合位点的参考三聚体系统,氢键对三聚体形成中的总自由能变化的贡献估计为7.5kcal / mol。三聚体的几何结构引起卟啉单元之间的特征性强相互作用,从而产生宽的Soret带,该带通过UV-vis和MCD光谱分析反卷积为四个成分。电化学测量表明,在三聚体中只有第一个环氧化过程逐步进行。

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