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An Experimental and Theoretical Approach to Control Salt vs Cocrystal vs Hybrid Formation-Crystal Engineering of an E/Z-Butenedioic Acid/Phthalazine System

机译:一种对盐的实验与理论方法,对盐/乙二醇/酞菁体系的盐与COCrystal vs杂交形成晶体工程

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摘要

The understanding and control of proton transfer reactions between acid-base pairs in the solid state are two of the main challenges for the crystal engineering community. The ability to control proton transfer reactions in the solid state enables a more selective preparation of cocrystals and salts, which facilitates the design of solid materials with specific physicochemical properties. In this study, an approach to control proton transfer reactions of an E-butenedioic acid/phthalazine cocrystal-salt (hybrid) system is presented, which allows the selective formation of its cocrystal and salt. In this approach the dominant intermolecular interactions between acid-base pairs are identified. Such interactions appear to be crucial for the inhibition or promotion of proton transfers in the solid state. For this, the relationship between these interactions and the so-called ApKa rule has been investigated.
机译:固态中酸碱对之间的质子转移反应的理解和控制是晶体工程界的两个主要挑战。 控制固态中的质子转移反应的能力使得可以更选择聚晶和盐的制备,这有利于具有特异性物理化学性质的固体材料的设计。 在本研究中,提出了一种控制E-丁二酸/酞菁盐(杂种)体系的质子转移反应的方法,其允许选择性地形成其COCRYSTAL和盐。 在这种方法中,鉴定了酸碱对之间的显性分子间相互作用。 这种相互作用似乎对固态抑制或促进质子转移至关重要。 为此,已经研究了这些交互与所谓的APKA规则之间的关系。

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