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Gibbs free energy of formation of rhodium sulfides

Jacob, KT and Gupta, Preeti (2014) Gibbs free energy of formation of rhodium sulfides. In: JOURNAL OF CHEMICAL THERMODYNAMICS, 70 . pp. 39-45.

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Official URL: http://dx.doi.org/10.1016/j.jct.2013.10.011

Abstract

Using a solid-state electrochemical technique, thermodynamic properties of three sulfide phases (RhS0.882, Rh3S4, Rh2S3) in the binary system (Rh + S) are measured as a function of temperature over the range from (925 to 1275) K. Single crystal CaF2 is used as the electrolyte. The auxiliary electrode consisting of (CaS + CaF2) is designed in such a way that the sulfur chemical potential converts into an equivalent fluorine potential at each electrode. The sulfur potentials at the measuring electrodes are established by the mixtures of (Rh + RhS0.882), (RhS0.882 + Rh3S4) and (Rh3S4 + Rh2S3) respectively. A gas mixture (H-2 + H2S + Ar) of known composition fixes the sulfur potential at the reference electrode. A novel cell design with physical separation of rhodium sulfides in the measuring electrode from CaS in the auxiliary electrode is used to prevent interaction between the two sulfide phases. They equilibrate only via the gas phase in a hermetically sealed reference enclosure. Standard Gibbs energy changes for the following reactions are calculated from the electromotive force of three cells: 2.2667Rh (s) + S-2 (g) -> 2.2667RhS(0.882) (s), Delta(r)G degrees +/- 2330/(J . mol(-1)) = -288690 + 146.18 (T/K), 4.44RhS(0.882) (s) + S-2 (g) -> 1.48Rh(3)S(4) (s), Delta(r)G degrees +/- 2245/(J . mol(-1)) = -245596 + 164.31 (T/K), 4Rh(3)S(4) (s) + S-2 (g) -> 6Rh(2)S(3) (s), Delta(r)G degrees +/- 2490/(J . mol(-1)) = -230957 + 160: 03 (T/K). Standard entropy and enthalpy of formation of rhodium sulfides from elements in their normal standard states at T = 298.15 K are evaluated. (C) 2013 Elsevier Ltd. All rights reserved.

Item Type: Journal Article
Publication: JOURNAL OF CHEMICAL THERMODYNAMICS
Publisher: ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
Additional Information: copyright for this article belongs to ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD,ENGLAND
Keywords: Sulfur potential; System (Rh plus S); Emf measurement; Gibbs energy of formation
Department/Centre: Division of Mechanical Sciences > Materials Engineering (formerly Metallurgy)
Date Deposited: 20 Jan 2014 08:20
Last Modified: 20 Jan 2014 08:20
URI: http://eprints.iisc.ac.in/id/eprint/48194

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