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通过机械化学研磨从液体转变为晶体:独特的主客体(HOF)共晶体

From liquid to crystal via mechanochemical grinding: unique host-guest (HOF) cocrystal.

作者信息

Som Shubham, Hasija Avantika, Chopra Deepak

机构信息

Department of Chemistry, Indian Institute of Science Education and Research, Bhopal by-Pass Road, Bhopal, Madhya Pradesh 462066, India.

出版信息

Acta Crystallogr C Struct Chem. 2023 Oct 1;79(Pt 10):399-408. doi: 10.1107/S2053229623007519. Epub 2023 Sep 4.

Abstract

Mechanochemical synthesis via grinding of trimesic acid (TA, CHO) and 4-chlorophenyl diphenyl phosphate (4CDP, CHClOP) (liquid at room temperature) in a 1:1 ratio resulted in the formation of an inclusion type of cocrystal. The crystallization of this phase via slow evaporation at low temperature (276-277 K) from methanol resulted in a rare stairstep morphology' during the process of crystal growth. This morphology was not observed after crystallization of the compound from other solvents like toluene, dichloromethane, acetone, hexane and isooctane, and hence this was characteristically observed in methanol only. The characterization from single-crystal X-ray diffraction revealed the formation of a cocrystal with five molecules of TA and two molecules of 4CDP in the asymmetric unit. The trimesic acid molecules form hydrogen-bonded dimers resulting in hexagonal rings, and these rings are stacked through π-π intermolecular interactions to make a hexagonal honeycomb-like structure. The phosphate molecules, 4CDP, were found to be trapped as guests in these hexagonal channels. The similarity in the packing of trimesic acid is compared in the cocrystal and the free acid quantitatively via Xpac analysis, which establishes the relationship of a 2D supramolecular construct' between them. This signifies a unique type of arrangement in which the voids created by the trimesic acid moiety do not undergo distortion by the inclusion of the guest molecules. The quantitative analysis of the intermolecular interactions using Hirshfeld surfaces and fingerprint plots deciphers the role of both strong O-H...O hydrogen bonds and weak intermolecular interactions in the crystal packing.

摘要

通过将偏苯三酸(TA,C₉H₆O₆)与4-氯苯基二苯基磷酸酯(4CDP,C₁₈H₁₄ClO₄P)(室温下为液体)按1:1比例研磨进行机械化学合成,得到了一种包合型共晶体。该相通过在低温(276 - 277 K)下从甲醇中缓慢蒸发结晶,在晶体生长过程中产生了罕见的“阶梯状形态”。从甲苯、二氯甲烷、丙酮、己烷和异辛烷等其他溶剂中结晶该化合物后未观察到这种形态,因此仅在甲醇中观察到这种特征形态。单晶X射线衍射表征显示,不对称单元中形成了由五个TA分子和两个4CDP分子组成的共晶体。偏苯三酸分子形成氢键二聚体,产生六边形环,这些环通过π-π分子间相互作用堆叠形成六边形蜂窝状结构。发现磷酸酯分子4CDP作为客体被困在这些六边形通道中。通过Xpac分析定量比较了共晶体和游离酸中偏苯三酸堆积的相似性,确定了它们之间“二维超分子结构”的关系。这表明了一种独特的排列方式,其中偏苯三酸部分产生的空隙不会因客体分子的包合而发生扭曲。使用Hirshfeld表面和指纹图谱对分子间相互作用进行定量分析,揭示了强O-H...O氢键和弱分子间相互作用在晶体堆积中的作用。

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