SLAC National Accelerator Laboratory , 2575 Sand Hill Road, Menlo Park, California 94025, United States.
Department of Chemistry, Massachusetts Institute of Technology , 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.
Chem Rev. 2016 Jul 13;116(13):7590-607. doi: 10.1021/acs.chemrev.5b00640. Epub 2016 Apr 20.
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.
我们介绍了近年来对液体水从环境条件到过冷状态的静态和时间分辨振动光谱研究的概述,以及对结晶和无定形冰形式的研究。讨论了由分子在体相和界面中形成的复杂氢键网络的结构和动力学,以及振动能量在整个网络中的耗散机制。我们研究了广泛的水问题,从传统的红外和拉曼光谱到飞秒泵浦探测、光子回波、光克尔效应、和频产生以及二维红外光谱研究。此外,我们还讨论了二维和频产生、三维红外和二维拉曼太赫兹光谱等新方法。通过比较各种线性和非线性光谱技术探测的互补方面,出现了一幅连贯的水动力学和能量学图景。此外,我们还概述了振动光谱在水研究中的未来展望。