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 g...
Water’s extended hydrogen-bond network results in rich and complex dynamics on the sub-picosecond ti...
The O–H stretching vibrational modes of water molecules are sensitive to their local environments. H...
Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relaxation dyna...
Author Institution: Department of Chemistry, Temple University; Office of Science and Technology, th...
Abstract. Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relax...
Water is an extraordinary substance. It owes its characteristic anomalous properties to a network of...
Abstract. The ultrafast frequency-resolved upconverted vibrational free induction decay (FID) of HDO...
Liquid water is a fascinating substance, ubiquitous in chemistry, physics, and biology. Its remarkab...
Water, one of the classical elements of ancient Greece and China, is a ubiquitous molecule because o...
The structure and structural dynamics of hydrogen bonded liquids were studied experimentally and the...
In the present contribution we summarize our observations concerning the ultrafast non-equilibrium d...
International audienceThe quest for a possible liquid-liquid coexistence line in supercooled water b...
Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relaxation dyna...
ABSTRACT: The O−H stretching vibrational modes of water molecules are sensitive to their local envir...
In dieser Arbeit werden die intermolekularen Schwingungen im Wasserstoffbrücken-Netzwerk des Wassers...
Water’s extended hydrogen-bond network results in rich and complex dynamics on the sub-picosecond ti...
The O–H stretching vibrational modes of water molecules are sensitive to their local environments. H...
Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relaxation dyna...
Author Institution: Department of Chemistry, Temple University; Office of Science and Technology, th...
Abstract. Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relax...
Water is an extraordinary substance. It owes its characteristic anomalous properties to a network of...
Abstract. The ultrafast frequency-resolved upconverted vibrational free induction decay (FID) of HDO...
Liquid water is a fascinating substance, ubiquitous in chemistry, physics, and biology. Its remarkab...
Water, one of the classical elements of ancient Greece and China, is a ubiquitous molecule because o...
The structure and structural dynamics of hydrogen bonded liquids were studied experimentally and the...
In the present contribution we summarize our observations concerning the ultrafast non-equilibrium d...
International audienceThe quest for a possible liquid-liquid coexistence line in supercooled water b...
Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relaxation dyna...
ABSTRACT: The O−H stretching vibrational modes of water molecules are sensitive to their local envir...
In dieser Arbeit werden die intermolekularen Schwingungen im Wasserstoffbrücken-Netzwerk des Wassers...
Water’s extended hydrogen-bond network results in rich and complex dynamics on the sub-picosecond ti...
The O–H stretching vibrational modes of water molecules are sensitive to their local environments. H...
Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relaxation dyna...