화학공학소재연구정보센터
Solid State Ionics, Vol.231, 1-4, 2013
Thermodynamic stability of Ag2Se from 350 to 500 K by a solid state galvanic cell
The numerical values on the standard thermodynamic functions of Ag2Se (naumannite) were determined by the electromotive force (EMF) method in a solid-state galvanic cell with superionic conductor RbAg4I5 as the solid electrolyte. Ag2Se was synthesized from pure elements in evacuated quartz glass ampoules and examined to be homogenous by SEM and EDS. According to the experimental data on the EMF versus temperature, the analytical equations were obtained for the polymorphic forms of Ag2Se. The temperature-dependent relationships of the Gibbs energy of formation of Ag2Se in its polymorphic forms and the standard thermodynamic functions of compounds within the temperature range of 350-500 K were also evaluated. The temperature of phase transformation from alpha-Ag2Se to beta-Ag2Se is determined experimentally to be 407.7 K and the enthalpy of phase transformation is 6.06 kJ mol(-1). (C) 2012 Elsevier B.V. All rights reserved.