Sarmah Manash P, Gonnade Rajesh G, Shashidhar Mysore S, Bhadbhade Mohan M
Division of Organic Synthesis, National Chemical Laboratory, Pune 411 008, India.
Chemistry. 2005 Mar 18;11(7):2103-10. doi: 10.1002/chem.200400851.
Racemic 2,4-di-O-acyl-myo-inosityl 1,3,5-orthoesters undergo transesterification catalyzed by sodium carbonate with varying ease of reaction in the solid state; reactions in solution and melt do not show such varied differences. An interesting crystal of a 1:1 molecular complex of highly reactive racemic 2,4-di-O-benzoyl-myo-inosityl 1,3,5-orthoformate and its orthoacetate analogue exhibited better reactivity than the latter component alone. Single-crystal X-ray structures of the reactants have been correlated with the observed differences in the acyl-transfer efficiencies in the solid state. Although each of the derivatives helically self-assembles around the crystallographic 2(1) axis linked through O-H...O hydrogen bonding, the pre-organization of the reactive groups (C=O [El] and OH [Nu]), C-H...O and the C-H...pi interactions are significantly more favourable for the reactive derivatives than the less reactive ones. Bond-length distributions also showed differences; the O-C bond of the axial benzoyl group, which gets cleaved during the reaction, is longer (1.345-1.361 A) relative to the chemically equivalent O-C bond of the equatorial benzoyl group (1.316-1.344 A) in the reactive derivatives. These bond-length differences are not significant in the less reactive derivatives. The overall molecular organization is different too; the strikingly discrete helices, which may be viewed as "reaction tunnels" and are held by interhelical interactions, are clearly evident in the reactive derivatives in comparison with the less reactive ones.
外消旋2,4-二-O-酰基-肌醇1,3,5-原酸酯在固态下会发生由碳酸钠催化的酯交换反应,反应难易程度各异;而在溶液和熔体中的反应则没有如此大的差异。一种由高反应活性的外消旋2,4-二-O-苯甲酰基-肌醇1,3,5-原甲酸酯及其原乙酸酯类似物形成的1:1分子复合物的有趣晶体,其反应活性比单独的后一种组分更高。反应物的单晶X射线结构已与固态下观察到的酰基转移效率差异相关联。尽管每种衍生物都通过O-H...O氢键围绕晶体学2(1)轴螺旋自组装,但反应基团(C=O [亲电试剂] 和OH [亲核试剂])、C-H...O和C-H...π相互作用的预组织对于反应活性较高的衍生物比反应活性较低的衍生物明显更有利。键长分布也存在差异;在反应过程中会断裂的轴向苯甲酰基的O-C键,相对于反应活性衍生物中赤道苯甲酰基的化学等效O-C键(1.316 - 1.344 Å)更长(1.345 - 1.361 Å)。这些键长差异在反应活性较低的衍生物中并不显著。整体分子组织也不同;与反应活性较低的衍生物相比,反应活性较高的衍生物中明显离散的螺旋结构,可被视为“反应通道”,并通过螺旋间相互作用维系,清晰可见。