Department of Chemistry, Concordia College, Moorhead, Minnesota 56562, USA.
J Phys Chem A. 2009 Dec 24;113(51):14052-9. doi: 10.1021/jp9057127.
Mole fraction and temperature studies of halogen bonding between 1-iodo-perfluorobutane, 1-iodo-perfluorohexane, or 2-iodo-perfluoropropane and pyridine were performed using noisy light-based coherent anti-Stokes Raman scattering (I((2)) CARS) spectroscopy. The ring breathing mode of pyridine both is highly sensitive to halogen bonding and provides a strong I((2)) CARS signal. As the lone pair electrons from the pyridinyl nitrogen interact with the sigma-hole on the iodine from the iodo-perfluoroalkane, the ring breathing mode of pyridine blue-shifts proportionately with the strength of the interaction. The measured blue shift for halogen bonding of pyridine and all three iodo-perfluoroalkanes is comparable to that for hydrogen bonding between pyridine and water. 2-Iodo-perfluoropropane displays thermodynamic behavior that is different from that of the 1-iodo-perfluoroalkanes, which suggests a fundamental difference at the molecular level. A potential explanation of this difference is offered and discussed.
采用基于噪声光的相干反斯托克斯拉曼散射(I((2)) CARS)光谱法研究了 1-碘全氟丁烷、1-碘全氟己烷或 2-碘全氟丙烷与吡啶之间的卤键的摩尔分数和温度。吡啶的环呼吸模式对卤键高度敏感,并提供了强的 I((2)) CARS 信号。由于吡啶基氮上的孤对电子与碘代全氟烷烃上碘原子的 sigma 空穴相互作用,吡啶的环呼吸模式随相互作用强度的增加而蓝移。测量得到的吡啶与所有三种碘代全氟烷烃的卤键蓝移与吡啶与水之间氢键的蓝移相当。2-碘全氟丙烷的热力学行为与 1-碘代全氟烷烃不同,这表明在分子水平上存在根本差异。对此差异提供并讨论了一种可能的解释。