Literature DB >> 15469258

Stepwise hydration and multibody deprotonation with steep negative temperature dependence in the benzene.+ -water system.

Yehia Ibrahim1, Edreese Alsharaeh, Keith Dias, Michael Meot-Ner Mautner, M Samy El-Shall.   

Abstract

We studied the stepwise hydration and solvent-mediated deprotonation of the benzene*+ cation (Bz*+) and found several unusual features. The solvent binding energies DeltaH on-1,n for the reactions Bz*+(H2O)n-1 + H2O --> Bz*+(H2O)n are nearly constant at 9 +/- 1 kcal mol-1 for n = 1 to 8. We observed a remarkable sudden decrease in the entropy of association accompanying the formation of Bz*+(H2O)7 and Bz*+(H2O)8, indicating strong orientational restraint in the hydration shells of these clusters consistent with the formation of cagelike structures. We observed the size-dependent deprotonation of Bz*+ in a cooperative multibody process, where n H2O molecules (n >/= 4) can remove a proton from Bz*+ to form protonated water clusters. We measured, for the first time, the temperature dependence of such a process and found a negative temperature coefficient of a magnitude unprecedented in any chemical reaction, of the form k = AT-67+/- 4, or in an Arrhenius form having an activation energy of -34 +/- 1 kcal mol-1. The temperature effect may be explained by Bz*+ and four H2O molecules needing to be assembled from gas-phase components to form the reactive species. Such large temperature effects may be therefore general in solvent cluster-mediated reactions.

Entities:  

Year:  2004        PMID: 15469258     DOI: 10.1021/ja046512l

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  2 in total

1.  Size-restricted proton transfer within toluene-methanol cluster ions.

Authors:  Chi-Tung Chiang; Kevin S Shores; Marek Freindorf; Thomas Furlani; Robert L DeLeon; James F Garvey
Journal:  J Phys Chem A       Date:  2008-10-25       Impact factor: 2.781

2.  Microhydration of PAH+ cations: evolution of hydration network in naphthalene+-(H2O) n clusters (n ≤ 5).

Authors:  Kuntal Chatterjee; Otto Dopfer
Journal:  Chem Sci       Date:  2018-01-24       Impact factor: 9.825

  2 in total

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