共晶
分子间力
化学
晶体工程
堆积
有机合成
非共价相互作用
分子
物理有机化学
纳米技术
计算化学
有机化学
氢键
材料科学
催化作用
作者
Lingjie Sun,Weigang Zhu,Xiaotao Zhang,Liqiang Li,Huanli Dong,Wenping Hu
摘要
Organic cocrystal engineering refers to two or more organic molecules stoichiometrically combined and held together by noncovalent intermolecular interactions, which differs from standard chemical synthesis involving covalent bond breakage and formation. Organic cocrystals have unique properties and offer a new strategy for creating enhanced organics. First, however, some key questions need to be addressed: How do diverse monomers affect the intermolecular interaction kinetics during cocrystallization? How do the intermolecular forces in cocrystals affect cocrystal functions? In this Perspective, the definition and advantages of organic cocrystal engineering, specifically in the construction of a reliable intermolecular interaction–stacking structure–performance relationship, are outlined. Additionally, recent developments in the field and the questions above are discussed. Finally, a brief conclusion and some hints on likely future developments are provided.
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