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酸···酰胺超分子构筑基元在共晶中的应用:从光谱检测到性能工程。

Acid···Amide Supramolecular Synthon in Cocrystals: From Spectroscopic Detection to Property Engineering.

机构信息

Solid State and Structural Chemistry Unit , Indian Institute of Science , Bangalore 560 012 , India.

出版信息

J Am Chem Soc. 2018 May 23;140(20):6361-6373. doi: 10.1021/jacs.8b02435. Epub 2018 May 11.

Abstract

The acid···amide dimer heterosynthon in cocrystals of aromatic acids and primary amides is identified by marker peaks in the IR spectra that are characteristic of individual N-H···O and O-H···O interactions and also of the extended synthon. The O-H···O hydrogen bond is crucial to heterodimer formation in contrast to the N-H···O bond. A combinatorial study, tuning the chemical nature of acid and amide functionalities, leads to 22 cocrystals out of 36 crystallization attempts. Four quadrants I-IV are defined based on acidity and basicity of the acid and amide components. The strong acid-strong base combination in quadrant I favors the planar acid···amide heterodimer in its eight cocrystals. Quadrant IV with its weak acid-weak base combination is the least favored for the planar heterosynthon and synthon diversity is observed in the eight cocrystals obtained. The strong-weak and weak-strong combinations in quadrants II and III are expectedly ambivalent. This exercise highlights the effect of molecular features on supramolecular behavior. Quadrant I crystals, with their propensity for the planar acid···amide heterodimer are suitable for the engineering of crystals that can be sheared. This quadrant favors the formation of elastic crystals too. The overall result is that 57% (4 in 7) of all crystals in this quadrant are deformable, compared with 14% (1 in 7) in the three other quadrants. This work is a complete crystal engineering exercise from synthon identification to a particular desired crystal packing to property selection. One can virtually anticipate the mechanical property of a putative acid···amide cocrystal from a knowledge of just the molecular structures of the constituent acid and amide molecules.

摘要

在芳香酸和伯酰胺的共晶中,酸···酰胺二聚体异质同晶单元通过红外光谱中的特征标记峰来识别,这些标记峰分别对应于单个的 N-H···O 和 O-H···O 相互作用以及扩展的同晶单元。与 N-H···O 键相比,O-H···O 氢键对于异二聚体的形成至关重要。通过对酸和酰胺官能团化学性质的组合研究,在 36 次结晶尝试中得到了 22 个共晶。根据酸和酰胺组分的酸度和碱度,定义了四个象限 I-IV。象限 I 中的强酸-强碱组合有利于 8 个共晶中的平面酸···酰胺异二聚体。具有弱酸-弱碱组合的象限 IV 最不利于平面异质同晶单元的形成,并且在获得的 8 个共晶中观察到了同晶单元的多样性。象限 II 和 III 中的强-弱和弱-强组合是预期的两可的。该研究强调了分子特征对超分子行为的影响。具有平面酸···酰胺异二聚体倾向的象限 I 晶体适合于工程设计可以剪切的晶体。该象限也有利于形成弹性晶体。总的来说,在这个象限中,57%(4 个中的 7 个)的晶体是可变形的,而在其他三个象限中,只有 14%(1 个中的 7 个)是可变形的。这项工作是从同晶单元的识别到特定的期望晶体堆积再到性质选择的完整晶体工程练习。从组成酸和酰胺分子的分子结构的知识,几乎可以预测假定的酸···酰胺共晶的力学性能。

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