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Titlebook: Spectroscopic Investigations of Hydrogen Bond Network Structures in Water Clusters; Kenta Mizuse Book 2013 Springer Japan 2013 Cooling Tec

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,Infrared Spectroscopy of Chromophore-Labeled Water Clusters Phenol-(H,O), (, < ~50), motifs. The suppression of free OH band intensity with an increase of . represents the increase of the abundance of 4-coordinated waters. We expect that the present characterization method of hydrogen bond networks may be applicable to more complicated, condensed phase water.
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,Infrared Spectroscopy Of Large Protonated Water Clusters H,(H,O), (, ≤ 221), the surface structures of the large-sized clusters are similar to those of liquid water and ice. The observed spectra, in addition to recently reported spectra for large water clusters, are expected to be a benchmark for studies concerning large-scale hydrogen-bonded networks involving hundreds of water molecules.
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,Tuning of the Internal Energy and Isomer Distribution in Protonated Water Clusters H,(H,O), (, ≤ 50.(H.O)., we observed the hitherto missing water molecule, which is at the outside of the magic-numbered (. = 21) water cage and should fluctuate in higher temperatures. The present study showed the tagging or messenger technique is a powerful tool to probe even such relatively large water networks, which fluctuate with thermal effects.
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Book 2013ydrogen bond network structures, dynamics, and reactivity of various water clusters have been characterized at the molecular level. The main targets of this book are physical chemists and chemical physicists who are interested in water chemistry or cluster chemistry.
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Spectroscopic Investigations of Hydrogen Bond Network Structures in Water Clusters978-4-431-54312-1Series ISSN 2190-5053 Series E-ISSN 2190-5061
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https://doi.org/10.1007/978-4-431-54312-1Cooling Technique for Cluster Ions; Coordination Number Analyses of Water; Hydrogen Bond Network Disto
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