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首页> 外文期刊>Acta crystallographica. Section C, Structural chemistry. >Correlation of the solid-state reactivities of racemic 2,4(6)-di-O-benzoyl-myo-inositol 1,3,5-orthoformate and its 4,4′-bipyridine cocrystal with their crystal structures
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Correlation of the solid-state reactivities of racemic 2,4(6)-di-O-benzoyl-myo-inositol 1,3,5-orthoformate and its 4,4′-bipyridine cocrystal with their crystal structures

机译:外消旋2,4(6)-二-O-苯甲酰基-肌醇1,3,5-原甲酸酯及其4,4'-联吡啶共晶体的固态反应性与其晶体结构的相关性

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摘要

Racemic 2,4(6)-di-O-benzoyl-myo-inositol 1,3,5-orthoformate, C21H18O8, (1), shows a very efficient intermolecular benzoyl-group migration reaction in its crystals. However, the presence of 4,4′-bipyridine molecules in its cocrystal, C21H18O8·C10H8N2, (1)·BP, inhibits the intermolecular benzoyl-group transfer reaction. In (1), molecules are assembled around the crystallographic twofold screw axis (b axis) to form a helical self-assembly through conventional O—H...O hydrogen-bonding interactions. This helical association places the reactive C6-O-benzoyl group (electrophile, El) and the C4-hydroxy group (nucleophile, Nu) in proximity, with a preorganized El...Nu geometry favourable for the acyl transfer reaction. In the cocrystal (1)·BP, the dibenzoate and bipyridine molecules are arranged alternately through O—H...N interactions. The presence of the bipyridine molecules perturbs the regular helical assembly of the dibenzoate molecules and thus restricts the solid-state reactivity. Hence, unlike the parent dibenzoate crystals, the cocrystals do not exhibit benzoyl-transfer reactions. This approach is useful for increasing the stability of small molecules in the crystalline state and could find application in the design of functional solids.
机译:外消旋的2,4(6)-二-O-苯甲酰基-肌醇1,3,5-原甲酸酯C21H18O8(1)在其晶体中显示出非常有效的分子间苯甲酰基基团迁移反应。然而,在其共晶体C21H18O8·C10H8N2(1)·BP中存在4,4'-联吡啶分子抑制了分子​​间苯甲酰基基团的转移反应。在(1)中,分子通过常规的OH-O ... O氢键相互作用围绕晶体学的双重螺旋轴(b轴)组装成螺旋自组装体。该螺旋缔合将反应性C6-O-苯甲酰基(亲电子,E1)和C4-羟基(亲核,Nu)置于附近,具有有利于酰基转移反应的预先组织的El ... Nu几何形状。在共结晶(1)·BP中,二苯甲酸酯和联吡啶分子通过OH ... N相互作用交替排列。联吡啶分子的存在干扰了二苯甲酸酯分子的规则的螺旋组装,因此限制了固态反应性。因此,与母体二苯甲酸酯晶体不同,共晶体不显示苯甲酰基转移反应。该方法对于提高结晶态小分子的稳定性很有用,并且可以在功能性固体的设计中找到应用。

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