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      Spectral Signatures of Hydrated Proton Vibrations in Water Clusters

      Science
      American Association for the Advancement of Science (AAAS)

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          Abstract

          The ease with which the pH of water is measured obscures the fact that there is presently no clear molecular description for the hydrated proton. The mid-infrared spectrum of bulk aqueous acid, for example, is too diffuse to establish the roles of the putative Eigen (H3O+) and Zundel (H5O2+) ion cores. To expose the local environment of the excess charge, we report how the vibrational spectrum of protonated water clusters evolves in the size range from 2 to 11 water molecules. Signature bands indicating embedded Eigen or Zundel limiting forms are observed in all of the spectra with the exception of the three- and five-membered clusters. These unique species display bands appearing at intermediate energies, reflecting asymmetric solvation of the core ion. Taken together, the data reveal the pronounced spectral impact of subtle changes in the hydration environment.

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          Author and article information

          Journal
          Science
          Science
          American Association for the Advancement of Science (AAAS)
          0036-8075
          1095-9203
          June 17 2005
          June 17 2005
          : 308
          : 5729
          : 1765-1769
          Article
          10.1126/science.1113094
          15961665
          194ca132-820c-473c-87ca-7c064dd556fb
          © 2005
          History

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