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Synthesis and Molecular Structure of a Copper Octaiodocorrole

机译:八八烷基铜铜的合成与分子结构

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摘要

Although rather delicate on account of their propensity to undergo deiodination, β-octaiodoporphyrinoids are of considerable interest as potential precursors to novel β-octasubstituted macrocycles. Presented herein are early results of our efforts to synthesize β-octaiodocorrole derivatives. Oxidative condensation of 3,4-diiodopyrrole and aromatic aldehydes failed to yield free-base octaiodocorroles. Treatment of copper meso-tris(p-cyanophenyl)corrole with N-iodosuccinimide and trifluoroacetic acid over several hours, however, yielded the desired β-octaiodinated product in ∼22% yield. Single-crystal X-ray structure determination of the product revealed a strongly saddled corrole macrocycle with metrical parameters very close to those of analogous Cu octabromocorrole complexes. The compound was also found to exhibit an exceptionally red-shifted Soret maximum (464 nm in dichloromethane), underscoring the remarkable electronic effect of β-octaiodo substitution.
机译:尽管由于其易于去碘化作用而相当微妙,但作为新型β-八取代大环化合物的潜在前体,β-章鱼卟啉类化合物引起了广泛的关注。本文介绍的是我们合成β-章鱼酰基衍生物的努力的早期结果。 3,4-二碘吡咯和芳族醛的氧化缩合不能产生游离碱的octaiodocorroles。用N-碘代琥珀酰亚胺和三氟乙酸处理数小时的铜内三(对氰基苯基)甲氧铜,以约22%的产率获得了所需的β-碘代亚胺化产物。产品的单晶X射线结构测定表明,其鞍形的强腐蚀大环化合物的度量参数非常类似于类似的Cu八溴代corrole配合物。还发现该化合物表现出异常红移的Soret最大值(在二氯甲烷中为464 nm),这突出了β-章鱼酰基取代的显着电子效应。

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