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Imidazoporphyrins as supramolecular tectons: synthesis and self-assembly of zinc 2-(4-pyridyl)-1H-imidazo[4,5-b]porphyrinate

机译:咪唑卟啉作为超分子构装:锌2-(4-吡啶基)-1H-咪唑的合成和自组装[4,5-B]卟啉

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摘要

5,10,15,20-Tetramesityl-2-(4-pyridyl)-1H-imidazo[4,5-b]porphyrin (PyPor) bearing a pyridine donor site connected to the tetrapyrrolic macrocycle by a rigid imidazole linker was prepared in high yield by the condensation of the corresponding 2,3-dioxochlorin and 4-formylpyridine in the presence of ammonium acetate. After the insertion of a metal ion capable of metal-ligand axial coordination, namely Zn(II), this compound afforded self-complementary porphyrin PyPorZn which was suitable for self-assembly. In the crystals, this complex exists as a zigzag coordination polymer formed through the axial coordination of the pyridine nitrogen atom to the zinc ion of the neighbouring porphyrin molecule. The Zn atoms adopt a distorted tetragonal pyramidal environment and the pyridine rings significantly deviate from the orthogonal orientation to the mean N-4 plane of the adjacent macrocycle (the C-para-N-Py-Zn angle is equal to 148 degrees). This distortion was analysed by using DFT calculations of a zinc 5,10,15,20-tetraphenylporphyrinate-pyridine complex (TPPZn-Py). The energy and the geometry of TPPZn-Py were calculated by varying the tilt of the pyridine ligand. The change of the Cpara-NPy-Zn angle from 180 degrees to 150 degrees induces a small increase (within 1.5 kcal mol(-1)) of the total energy of the complex. Such a small increase can be easily compensated by the inter-molecular CH center dot center dot center dot H and CH center dot center dot center dot pi interactions in the crystals. The self-assembly of PyPorZn in non-coordinating solvents was also investigated by NMR and UV-vis spectroscopy. In contrast to the nickel complex PyPorNi, the zinc complex exists in 10(-4) M solution in toluene and chloroform as a mixture of short linear oligomers. These oligomers dissociate affording monomer species upon heating, dilution or addition of a substituting ligand.
机译:制备携带刚性咪唑接头连接到四吡咯宏环的吡啶供体部位的5,10,15,20-四胞间体 - 2-(4-吡啶基)-1H-咪唑啉(斑吡啶卟啉)通过相应的2,3-二氧化体和4-甲酰基吡啶在乙酸铵存在下的高屈服。在能够轴向配体的金属离子插入金属离子之后,即Zn(II),该化合物提供了适用于自组装的自互补卟啉Pyporzn。在晶体中,这种复合物作为通过通过吡啶氮原子的轴向与相邻的卟啉分子的锌离子的轴向配制而形成的Z字形配位聚合物。 Zn原子采用扭曲的四方锥体环境,吡啶环显着偏离与相邻宏循环的平均N-4平面的正交取向(C-Para-N-Py-Zn角等于148度)。通过使用锌5,10,15,20-四苯基卟啉络合物(TPPZN-PY)的DFT计算来分析这种扭曲。通过改变吡啶配体的倾斜来计算TPPZN-PY的能量和几何形状。从180度到150度的CPARA-NPY-Zn角度的变化诱导络合物总能量的小增加(在1.5千卡摩尔(-1)内)。可以通过分子间CH中心点中心点中心点H和CH中心点中心点中心点PI相互作用来容易地补偿这种小的增加。还通过NMR和UV-VI光谱研究了非协调溶剂中PYPORZN的自组装。与镍复合物Pyporni相反,锌络合物存在于10(-4)M溶液中的甲苯和氯仿作为短线性低聚物的混合物。这些低聚物在加热,稀释或加入替代配体时解离单体物质。

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  • 来源
    《CrystEngComm》 |2019年第9期|共11页
  • 作者单位

    RAS AN Frumkin Inst Phys Chem &

    Electrochem Leninsky Pr 31 Bldg 4 Moscow 119071 Russia;

    RAS AN Frumkin Inst Phys Chem &

    Electrochem Leninsky Pr 31 Bldg 4 Moscow 119071 Russia;

    RAS AN Frumkin Inst Phys Chem &

    Electrochem Leninsky Pr 31 Bldg 4 Moscow 119071 Russia;

    RAS AN Frumkin Inst Phys Chem &

    Electrochem Leninsky Pr 31 Bldg 4 Moscow 119071 Russia;

    Lomonosov Moscow State Univ Dept Chem Leninskiye Gory 1-3 Moscow 119991 Russia;

    RAS AN Frumkin Inst Phys Chem &

    Electrochem Leninsky Pr 31 Bldg 4 Moscow 119071 Russia;

    RAS AN Frumkin Inst Phys Chem &

    Electrochem Leninsky Pr 31 Bldg 4 Moscow 119071 Russia;

    Univ Bourgogne Franche Comte Inst Chim Mol Univ Bourgogne CNRS UMR 6302 9 Ave Alain Savary F-21078 Dijon France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;晶体学;
  • 关键词

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