氢键
卤键
债券
卤素
化学
低势垒氢键
氢
债券定单
三中心二电子键
六重键
化学键
计算化学
结晶学
粘结长度
有机化学
分子
业务
晶体结构
烷基
财务
作者
Daniel A. Decato,Jiyu Sun,Madeleine R. Boller,Orion B. Berryman
出处
期刊:Chemical Science
[The Royal Society of Chemistry]
日期:2022-01-01
卷期号:13 (37): 11156-11162
被引量:9
摘要
C-H hydrogen bonds have remarkable impacts on various chemical systems. Here we consider the influence of C-H hydrogen bonds to iodine atoms. Positioning a methyl group between two iodine halogen bond donors of the receptor engendered intramolecular C-H hydrogen bonding (HBing) to the electron-rich belt of both halogen bond donors. When coupled with control molecules, the role of the C-H hydrogen bond was evaluated. Gas-phase density functional theory studies indicated that methyl C-H hydrogen bonds help bias a bidentate binding conformation. Interaction energy analysis suggested that the charged C-H donors augment the halogen bond interaction-producing a >10 kcal mol-1 enhancement over a control lacking the C-H⋯I-C interaction. X-ray crystallographic analysis demonstrated C-H hydrogen bonds and bidentate conformations with triflate and iodide anions, yet the steric bulk of the central functional group seems to impact the expected trends in halogen bond distance. In solution, anion titration data indicated elevated performance from the receptors that utilize C-H Hydrogen Bond enhanced Halogen Bonds (HBeXBs). Collectively, the results suggest that even modest hydrogen bonds between C-H donors and iodine acceptors can influence molecular structure and improve receptor performance.
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