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Title: Transfer energetics of a series of homologous mono-alkylammonium ions and hence of (-CH2-) group - A probe for the solvent effect on hydrophobic hydration and the 3D-structuredness of aquo-cosolvent systems
Authors: Sinha, Rangana
Kundu, Kiron K
Issue Date: Sep-1998
Publisher: NISCAIR-CSIR, India
Abstract: Transfer Gibbs energies, ΔGo,. and entropies, ΔSo of -CH2- group have been evaluated in aqueous mixtures of 3D-structure promoting (SP) 2-propanol (2-PrOH) and 3D-structure breaking (SB) acetonitrile (ACN) by determining the solubilities of tetraphenylborate (Ph4B-) salts of a series of homologous mono-alkylammonium (RNH3+) ions at five equidistant temperatures ranging from 15o to 35°C. The transfer energetics of Ph4B: based on Ph4AsPh4B reference electrolyte assumption for the said solvents reported earlier, helped determine the same for the (RNH3+)ions. The chemical contribution of transfer energetics ΔPoLch(RNH3+) [P=G and S]as determined by subtracting the cavity and the relevant electrostatic effects reflect that solvation of (RNH3+)ions is' chiefly guided by the effect of decreased hydrophobic hydration (HbH) of 2-PrOH and the increased HbH of ACN molecules as compared to that of water molecules. But the observed 'characteristic maxima' in TΔSoLch (RNH3+)-composition profiles in 2-PrOH and absence of the same in ACN-water mixtures though likely to be guided by the 'buffer bonds' are seemingly guided by the predominant effect of 3D-SP propensity of 2-PrOH and 3D-SB propensity of ACN molecules respectively. The ΔPoLch values of (-CH2-) group have been obtained by subtracting the ΔPoLch (RNH3+) values of lower homologues from those of the next higher homologues and are found to be more or less additive. Also, while the observed increased destabilization of (-CH2-) group in both the cases is shown to be dictated by decreased HbH, the observed 'characteristic maxima' of TΔSoLch (-CH2-)-composition profiles in aqueous 2-PrOH and absence of the same in aqueous ACN are adduced to result from the effect of 3D-SP propensity of 2- PrOH and 3D-SB propensity of ACN molecules. A detailed analysis in the light of Kundu's 4-step transfer process also helped establish that TΔSoLch of the smallest (-CH2-) group is seemingly a better probe for the 3D structuredness of aquo-cosolvents as compared to those of HBz, pNA, HX and their individual ions with the involved structural and electronic complexities.
Page(s): 780-788
ISSN: 0975-0975(Online); 0376-4710(Print)
Appears in Collections:IJC-A Vol.37A(09) [September 1998]

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