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Weak Interactions and Conformational Changes in Core-Protonated A2- and Ax-Type Porphyrin Dications

机译:核心质子A2和AX型卟啉毒性的弱相互作用和构象变化

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Individual chemical motifs are known to introduce structural distortions to the porphyrin macrocycle, be it in the core or at the periphery of the macrocycle. The interplay when introducing two or more of these known structural motifs has been scarcely explored and is not necessarily simply additive; these structural distortions have a chance to compound or negate to introduce new structural types. To this end, a series of compounds with complementary peripheral (5,15-disubstitution) and core (acidification) substitution patterns were investigated. The single-crystal X-ray structures of 18 5,15-diphenylporphyrin, 5,15-diphenylporphyrindi-ium diacid, and related compounds are reported, including the first example of a 5,15-dialkylporphyrindi-ium. Normal-coordinate structural decomposition (NSD) analysis is used for a detailed analysis of the conformation of the porphyrin subunit within the crystal structures. An elongation of porphyrin macrocycles along the C5,C15- axis (B2g symmetry) is observed in all of the free base porphyrins and porphyrin dications; distance across the core is around 0.3 ? in the free base and diacid compounds, and more than doubled in 5,15-dipentylporphyrin and 5,15-dipentylporphyrindi-ium diacid. While the free base porphyrins are largely planar, a large out-of-plane distortion can be observed in 5,15-diphenylporphyrin diacids, with the expected “projective saddle” shape characteristic for such systems. The combination of these two distortions (B2u and B2g) from regular porphyrin structure results in a macrocycle best characterized in the chiral point-group D2. A rare structural type of a cis-hydrogen bond chelate is observed for 5,15-dipentylporphyrindi-ium diacid, which adopts an achiral C2v symmetry. Crystallographic data indicate that the protonated porphyrin core forms hydrogen bonding chelates (N-H?X?H-N) to counter-anions. Weaker interactions, such as induced intramolecular C-H?O interactions from the porphyrin periphery are described, with distances characteristic of charge-assisted interactions. This paper offers a conceptual framework for accessing porphyrin macrocycles with designable distortion and symmetry, useful for the selective perturbation of electronic states and a design-for-application approach to solid state porphyrin materials.
机译:已知个体化学基序将结构性扭曲引入卟啉宏观,如宏循环的周边。在引入这些已知的结构主题中的两个或更多个时的相互作用已经几乎没有探索,并且不一定是简单的添加剂;这些结构扭曲有机会化合物或否定引入新的结构类型。为此,研究了一系列具有互补外周(5,15-二取代)和核心(酸化)取代模式的化合物。报道了18,5,15-二苯基卟啉,5,15-二苯基卟啉二二酸和相关化合物的单晶X射线结构,包括5,15二烷基孢杆菌-1um的第一实例。正常坐标结构分解(NSD)分析用于详细分析晶体结构内的卟啉亚单元的构象。在所有游离碱卟啉和卟啉尿素中观察到沿C5,C15轴(B2G对称性)的卟啉宏γ的伸长率;核心的距离约为0.3?在游离碱和二酸化合物中,在5,15-二戊脲和5,15-己酰基卟啉-Ium二酸中增加一倍。虽然游离碱卟啉很大程度上是平面的,但可以在5,15-二苯基卟啉二酸中观察到大的外平面变形,其中具有这种系统的预期“投影鞍形”形状特征。这两个扭曲(B2U和B2G)的组合来自常规卟啉结构,导致在手性点组D2中最能表征的宏循环。观察到稀有结构类型的CIS-氢键螯合物,用于5,15-二苯基氏菌属二酸,其采用呈成对的C2V对称性。晶体数据表明质子化的卟啉核心形成氢键螯合物(N-H =x≤H-N)以对抗阴离子。描述较弱的相互作用,例如诱导的分子内C-H 2 O与卟啉周边的相互作用描述,具有电荷辅助相互作用的距离。本文提供了一种概念框架,用于访问具有可设计变形和对称性的卟啉宏γ,可用于电子国家的选择性扰动和固态卟啉材料的选择性扰动。

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