化学
飞秒
拉曼光谱
红外线的
二维红外光谱
过冷
红外光谱学
光谱学
化学物理
分子振动
分子
光学
激光器
热力学
量子力学
物理
有机化学
作者
Fivos Perakis,Luigi De Marco,Andrey Shalit,Fujie Tang,Zachary R. Kann,Thomas D. Kühne,Renato Torre,Mischa Bonn,Yuki Nagata
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2016-04-20
卷期号:116 (13): 7590-7607
被引量:439
标识
DOI:10.1021/acs.chemrev.5b00640
摘要
We present an overview of recent static and time-resolved vibrational spectroscopic studies of liquid water from ambient conditions to the supercooled state, as well as of crystalline and amorphous ice forms. The structure and dynamics of the complex hydrogen-bond network formed by water molecules in the bulk and interphases are discussed, as well as the dissipation mechanism of vibrational energy throughout this network. A broad range of water investigations are addressed, from conventional infrared and Raman spectroscopy to femtosecond pump-probe, photon-echo, optical Kerr effect, sum-frequency generation, and two-dimensional infrared spectroscopic studies. Additionally, we discuss novel approaches, such as two-dimensional sum-frequency generation, three-dimensional infrared, and two-dimensional Raman terahertz spectroscopy. By comparison of the complementary aspects probed by various linear and nonlinear spectroscopic techniques, a coherent picture of water dynamics and energetics emerges. Furthermore, we outline future perspectives of vibrational spectroscopy for water researches.
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