Vacuum ultraviolet spectroscopy of the lowest-lying electronic state in subcritical and supercritical water

被引:21
|
作者
Marin, Timothy W. [1 ]
Janik, Ireneusz [2 ]
Bartels, David M. [2 ]
Chipman, Daniel M. [2 ]
机构
[1] Benedictine Univ, Dept Chem, 5700 Coll Rd, Lisle, IL 60532 USA
[2] Notre Dame Radiat Lab, Notre Dame, IN 46556 USA
来源
NATURE COMMUNICATIONS | 2017年 / 8卷
基金
美国国家科学基金会; 美国能源部;
关键词
1ST ABSORPTION-BAND; LIQUID WATER; H2O; PHOTODISSOCIATION; DISSOCIATION; DIMERS; VAPOR;
D O I
10.1038/ncomms15435
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The nature and extent of hydrogen bonding in water has been scrutinized for decades, including how it manifests in optical properties. Here we report vacuum ultraviolet absorption spectra for the lowest-lying electronic state of subcritical and supercritical water. For subcritical water, the spectrum redshifts considerably with increasing temperature, demonstrating the gradual breakdown of the hydrogen-bond network. Tuning the density at 381 degrees C gives insight into the extent of hydrogen bonding in supercritical water. The known gas-phase spectrum, including its vibronic structure, is duplicated in the low-density limit. With increasing density, the spectrum blueshifts and the vibronic structure is quenched as the water monomer becomes electronically perturbed. Fits to the supercritical water spectra demonstrate consistency with dimer/trimer fractions calculated from the water virial equation of state and equilibrium constants. Using the known water dimer interaction potential, we estimate the critical distance between molecules (ca. 4.5 angstrom) needed to explain the vibronic structure quenching.
引用
收藏
页数:9
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