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Matrix Isolation Spectroscopy: Aqueous p-Toluenesulfonic Acid Solvation. | LitMetric

Matrix Isolation Spectroscopy: Aqueous p-Toluenesulfonic Acid Solvation.

J Phys Chem A

Laboratory for Aqueous and Surface Studies, Tufts University, Pearson Building, Medford, Massachusetts 02155, United States.

Published: January 2018

Interaction between p-toluenesulfonic acid (pTSA) and water is studied at -20 °C in a CCl matrix. In CCl water exists as monomers with restricted rotational motion about its symmetry axis. Additionally, CCl is transparent in the hydrogen-bonded region; CCl thus constitutes an excellent ambient thermal energy matrix isolation medium for diagnosing interactions with water. Introducing pTSA-nHO gives rise to two narrow resonances at 3642 cm and at 2835 cm plus a broad 3000-3550 cm absorption. In addition, negative monomer symmetric and asymmetric stretch features relative to nominally dry CCl indicate that fewer water monomers exist in the cooled (-20 °C) acid solution than in room-temperature anhydrous CCl. The negative peaks along with the broad absorption band indicate that water monomers are incorporated into clusters. The 3642 cm resonance is assigned to the OH-π interaction with a cluster containing many water molecules per acid molecule. The 2835 cm resonance is assigned to the (S-)O-H stretch of pTSA-dihydrate. The coexistence of these two species provides insights into interactions in this acid-water CCl system.

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Source
http://dx.doi.org/10.1021/acs.jpca.7b08939DOI Listing

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