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Diffuse scattering study of aspirin forms (I) and (II)

机译:阿司匹林形式(I)和(II)的扩散散射研究

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Full three-dimensional diffuse scattering data have been recorded for both polymorphic forms [(I) and (II)] of aspirin and these data have been analysed using Monte Carlo computer modelling. The observed scattering in form (I) is well reproduced by a simple harmonic model of thermally induced displacements. The data for form (II) show, in addition to thermal diffuse scattering (TDS) similar to that in form (I), diffuse streaks originating from stacking fault-like defects as well as other effects that can be attributed to strain induced by these defects. The present study has provided strong evidence that the aspirin form (II) structure is a true polymorph with a structure quite distinct from that of form (I). The diffuse scattering evidence presented shows that crystals of form (II) are essentially composed of large single domains of the form (II) lattice with a relatively small volume fraction of intrinsic planar defects or faults comprising misoriented bilayers of molecular dimers. There is evidence of some local aggregation of these defect bilayers to form small included regions of the form (I) structure. Evidence is also presented that shows that the strain effects arise from the mismatch of molecular packing between the defect region and the surrounding form (II) lattice. This occurs at the edges of the planar defects in the direction only.
机译:对于阿司匹林的多晶型物[(I)和(II)],都记录了完整的三维漫散射数据,并使用蒙特卡洛计算机模型对这些数据进行了分析。通过简单的热引起位移的谐波模型可以很好地重现所观察到的形式(I)的散射。形式(II)的数据显示,除了类似于形式(I)的热扩散散射(TDS)以外,还源自堆叠缺陷状缺陷以及其他归因于这些缺陷的应变所引起的扩散条纹缺陷。本研究提供了有力的证据,表明阿司匹林的形式(Ⅱ)结构是真正的多晶型物,其结构与形式(Ⅰ)完全不同。所呈现的漫散射证据表明,形式(II)的晶体基本上由形式(II)的大型单畴组成,具有相对较小体积的固有平面缺陷或断层,包括分子二聚体的错位双层。有证据表明,这些缺陷双层有些局部聚集,形成了形式(I)结构的较小包含区域。还提供了证据表明应变效应是由缺陷区域和周围的晶格(II)晶格之间的分子堆积不匹配引起的。这仅在方向上发生在平面缺陷的边缘。

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