Vibrational couplings and energy transfer pathways of water’s bending mode

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作者
Chun-Chieh Yu
Kuo-Yang Chiang
Masanari Okuno
Takakazu Seki
Tatsuhiko Ohto
Xiaoqing Yu
Vitaly Korepanov
Hiro-o Hamaguchi
Mischa Bonn
Johannes Hunger
Yuki Nagata
机构
[1] Max Planck Institute for Polymer Research,Department of Basic Science
[2] Graduate School of Arts and Sciences,Graduate School of Engineering Science
[3] The University of Tokyo,Department of Applied Chemistry and Institute of Molecular Science
[4] Osaka University,Institute of Microelectronics Technology and High Purity Materials
[5] National Chiao Tung University,undefined
[6] RAS,undefined
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Nature Communications | / 11卷
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摘要
Coupling between vibrational modes is essential for energy transfer and dissipation in condensed matter. For water, different O-H stretch modes are known to be very strongly coupled both within and between water molecules, leading to ultrafast dissipation and delocalization of vibrational energy. In contrast, the information on the vibrational coupling of the H-O-H bending mode of water is lacking, even though the bending mode is an essential intermediate for the energy relaxation pathway from the stretch mode to the heat bath. By combining static and femtosecond infrared, Raman, and hyper-Raman spectroscopies for isotopically diluted water with ab initio molecular dynamics simulations, we find the vibrational coupling of the bending mode differs significantly from the stretch mode: the intramode intermolecular coupling of the bending mode is very weak, in stark contrast to the stretch mode. Our results elucidate the vibrational energy transfer pathways of water. Specifically, the librational motion is essential for the vibrational energy relaxation and orientational dynamics of H-O-H bending mode.
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