五聚体
红外光谱学
红外线的
氢键
化学
随机六聚体
光离子化
光谱学
分析化学(期刊)
结晶学
分子
离子
电离
光学
物理
有机化学
生物化学
量子力学
作者
Bingbing Zhang,Yong Yu,Yangyang Zhang,Shukang Jiang,Qinming Li,Han‐Shi Hu,Gang Li,Zhi Zhao,Chong Wang,Hua Xie,Weiqing Zhang,Dongxu Dai,Guorong Wu,Dong H. Zhang,Ling Jiang,Jun Li,Xueming Yang
标识
DOI:10.1073/pnas.2000601117
摘要
Infrared spectroscopic study of neutral water clusters is crucial to understanding of the hydrogen-bonding networks in liquid water and ice. Here we report infrared spectra of size-selected neutral water clusters, (H2O) n (n = 3-6), in the OH stretching vibration region, based on threshold photoionization using a tunable vacuum ultraviolet free-electron laser. Distinct OH stretch vibrational fundamentals observed in the 3,500-3,600-cm-1 region of (H2O)5 provide unique spectral signatures for the formation of a noncyclic pentamer, which coexists with the global-minimum cyclic structure previously identified in the gas phase. The main features of infrared spectra of the pentamer and hexamer, (H2O) n (n = 5 and 6), span the entire OH stretching band of liquid water, suggesting that they start to exhibit the richness and diversity of hydrogen-bonding networks in bulk water.
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