四硫富瓦烯
卤键
卤素
结晶学
晶体工程
氢键
分子间力
Crystal(编程语言)
晶体结构
化学
共晶
分子
材料科学
超分子化学
有机化学
烷基
计算机科学
程序设计语言
作者
Y. H. Zheng,Zhao Qu,Yichao Wu,Zi-Long Wang,Zhenxun Tang,Tao Wen,Zhuoyu Ji
标识
DOI:10.1002/crat.202300315
摘要
Abstract The application of organic crystal in different photoelectric device has different demand on the crystal structure and morphology, while the self‐assembly of different materials into crystals with a desired morphology remains a challenge. Herein, using three binary halogen‐bonded cocrystals involving a nonplanar halogen accepter molecule tetra(4‐pyridyl)‐tetrathiafulvalene (TTF(py) 4 ), co‐crystallized with halogen donor aryl iodides C 6 F 6‐x I x (x = 2,3, 1,3,5‐trifluoro‐2,4,6‐triiodobenzene (IFB), meta ‐1,3‐diiodotetrafluorobenzene (mdIFB) or para ‐1,3‐diiodotetrafluorobenzene (pdIFB)), are reported. TTF(py) 4 ‐IFB cocrystals are formed primarily via N···I halogen bonds and F···H hydrogen bonds, while TTF(py) 4 ‐mdIFB cocrystals and TTF(py) 4 ‐pdIFB cocrystals are formed primarily via π – π Interactions, N···I halogen bonds and F···H hydrogen bonds, homogeneous π – π interactions are dominant in TTF(py) 4 ‐mdIFB, while heterogeneous π – π interactions are dominant in TTF(py) 4 ‐pdIFB. Through predicted morphology based on the attachment energy (E att ) theory, especially π – π interaction, the influence of intermolecular interactions on crystal morphology is analyzed. The study demonstrates that the π – π interaction plays an important role in regulating the crystal structure and morphology, the work provides a deeper understanding of π – π interactions in nonplanar binary halogen‐bonded cocrystals.
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