화학공학소재연구정보센터
Journal of Chemical Thermodynamics, Vol.37, No.3, 233-241, 2005
Saturation molalities and standard molar enthalpies of solution of 2'-deoxyadenosine center dot H2O(cr), 2'-deoxycytidine center dot H2O(cr), 2'-deoxyguanosine center dot H2O(cr), 2'-deoxyinosine(cr), and 2'-deoxyuridine(cr) in H2O(1)
Saturation molalities m(sat) in H2O(l) have been measured for the substances 2'-deoxyadenosine . H2O(cr), 2'-deoxycytidine . H2O(cr), 2'-deoxyguanosine . H2O(cr), 2'-deoxyinosine(cr), and 2'-deoxyuridine(cr) by using h.p.l.c. The states of hydration were established by performing Karl Fischer analyses on samples of these substances, which had been allowed to equilibrate with their respective aqueous saturated solutions for several days at T approximate to 298 K and then dried with air at T approximate to 296 K for approximate to 24 h. The crystalline forms of the substances were identified by comparison of the results of X-ray diffraction measurements with results from the literature. Also, calorimetric molar enthalpies of solution Delta(sol)H(m)(cal) for these substances were measured by using an isoperibol solution calorimeter. A self-association (stacking) model was used to estimate values of the activity coefficients gamma and relative apparent molar enthalpies L-phi for these substances. These gamma and L-phi values were used to adjust the measured values of m(sat) and Delta(sol)H(m) to the standard state and thus obtain values of the standard molar Gibbs free energy Delta(sol)Gdegrees(m) and enthalpy changes Delta(sol)Hdegrees(m) for the dissolution reactions of these substances. The values of the pKs and of the standard molar enthalpies of the ionization reactions were also used to account for speciation of the substances in the calculations of Delta(sol)Gdegrees(m) and Delta(sol)Hdegrees(m). Published by Elsevier Ltd.