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Structure-property correlations in bending and brittle organic crystals

机译:弯曲和脆性有机晶体的结构性质相关性

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Bending of crystals of molecular solids occurs when the strength of intermolecular interactions in orthogonal directions is significantly different. We report here a survey of 60 molecular crystals and establish a causative correlation between bending and crystal packing. This group contains crystals with 4 and 8 angstrom crystal axes and includes 1D, 2D, 3D, isostructural, polymorphic, stacked, interlocked, single, and multicomponent crystals and solvates. We found that 17 of these 60 crystals may be bent, whereas the rest are brittle and cannot be bent plastically. The bending crystals could be deformed into many shapes; sometimes, they could even be flattened upon themselves without breakage. A model for bending is proposed using the information obtained from X-ray diffraction, face indexing, and mechanical property measurements on both bending and non-bending ( brittle) crystals. The bending and brittleness of these molecular crystals are discussed in comparison with the deformation behavior of metals. Molecular crystals show practically no change in volume and the lengths of the inner and the outer arcs and the sample thickness are unchanged following plastic bending. This is in contrast with the bending of metallic materials, in which a decrease in thickness is evident. Isotropic crystals with comparable intermolecular interactions in the three orthogonal directions are "cross-linked" and do not bend; they are hard and brittle. Mechanical properties of molecular crystals are important because they vary with the crystal form and have major implications for large-scale processing and handling of materials in industry, especially the pharmaceutical industry.
机译:当正交方向上的分子间相互作用的强度显着不同时,就会发生分子固体晶体的弯曲。我们在这里报告了60种分子晶体的调查结果,并建立了弯曲和晶体堆积之间的因果关系。该组包含具有4和8埃晶轴的晶体,包括1D,2D,3D,同构,多晶,堆叠,互锁,单和多组分晶体和溶剂化物。我们发现这60个晶体中有17个可能弯曲,而其余的则是脆性的,不能塑性弯曲。弯曲的晶体可以变形为许多形状。有时,甚至可以将它们弄平而不破裂。使用从X射线衍射,面索引和弯曲和非弯曲(脆性)晶体的机械性能测量获得的信息,提出了一种弯曲模型。与金属的变形行为相比,讨论了这些分子晶体的弯曲和脆性。分子晶体在体积上几乎没有变化,塑性弯曲后内,外弧的长度和样品的厚度均保持不变。这与金属材料的弯曲相反,在金属材料的弯曲中厚度明显减小。在三个正交方向上具有可比的分子间相互作用的各向同性晶体是“交联”的,不会弯曲;他们又硬又脆。分子晶体的机械性能很重要,因为它们随晶体形式而变化,并且对工业特别是制药工业中材料的大规模加工和处理具有重要意义。

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