High–Temperature Mass Spectrometric Studies of Ni–V–O System: Thermodynamic Properties Over 3 V 2 O 8 (s) + NiO(s)> Biphasic Region

ABSTRACT Rationale The Ni–V–O system is of considerable importance owing to its applications in catalysis and electrochemical devices. But experimental thermodynamic data for the Ni–V–O system remain limited. The KEMS study can provide the fundamental thermodynamic data like equilibrium partial pressure of gaseous species over the condensed phase, which can be used to evaluate the thermodynamic functions for the chemical equilibria and the involved condensed phases. The thermodynamic data can be valuable for both practical applications of Ni–V–O systems and fundamental science. Method/Approach High–Temperature Knudsen Effusion Mass Spectrometry (HT‐KEMS) was employed to investigate the vaporization behaviour of the Ni–V–O system. Equilibrium partial pressures of the vaporizing species were measured using electron impact ionization mass spectrometry, and the obtained data were utilized for thermodynamic evaluation of the 3 V 2 O 8 (s) + NiO(s)> biphasic region in the Ni–V–O system. Results/Key Points The major vapor species detected over the sample were O 2 (g), Ni(g), and VO 2 (g). In addition, two minor species were also detected: V(g) and NiO(g). The pressure–temperature (p–T) relations for the major species over 3 V 2 O 8 (s) + NiO(s)> region were deduced in the experimental temperature range of 1476–1581 K. From the p–T and equilibrium constant–temperature (K–T) relations, based on the second and third law methods of thermodynamics, the enthalpy changes and temperature dependence of Gibbs energy of four reactions were evaluated. Subsequently, the enthalpy of formation at 298 K and Gibbs energy of formation of Ni 3 V 2 O 8 (s) as a function of temperature were deduced. Conclusions Thermodynamic properties of the ternary compound Ni 3 V 2 O 8 (s) were deduced employing HT‐KEMS measurements.

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Journal
Rapid Communications in Mass Spectrometry
Published
2026-09-17
DOI
https://doi.org/10.1002/rcm.70181
Primary Topic
Catalysis and Oxidation Reactions
Type
article
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High–Temperature Mass Spectrometric Studies of Ni–V–O System: Thermodynamic Properties Over 3 V 2 O 8 (s) + NiO(s)> Biphasic Region

V.V. Trinadh, C. V. S. Brahmananda Rao, Pooja
Rapid Communications in Mass Spectrometry
Catalysis and Oxidation Reactions
article

High–Temperature Mass Spectrometric Studies of Ni–V–O System: Thermodynamic Properties Over 3 V 2 O 8 (s) + NiO(s)> Biphasic Region

V.V. Trinadh, C. V. S. Brahmananda Rao, Pooja
article en

Abstract

ABSTRACT Rationale The Ni–V–O system is of considerable importance owing to its applications in catalysis and electrochemical devices. But experimental thermodynamic data for the Ni–V–O system remain limited. The KEMS study can provide the fundamental thermodynamic data like equilibrium partial pressure of gaseous species over the condensed phase, which can be used to evaluate the thermodynamic functions for the chemical equilibria and the involved condensed phases. The thermodynamic data can be valuable for both practical applications of Ni–V–O systems and fundamental science. Method/Approach High–Temperature Knudsen Effusion Mass Spectrometry (HT‐KEMS) was employed to investigate the vaporization behaviour of the Ni–V–O system. Equilibrium partial pressures of the vaporizing species were measured using electron impact ionization mass spectrometry, and the obtained data were utilized for thermodynamic evaluation of the 3 V 2 O 8 (s) + NiO(s)> biphasic region in the Ni–V–O system. Results/Key Points The major vapor species detected over the sample were O 2 (g), Ni(g), and VO 2 (g). In addition, two minor species were also detected: V(g) and NiO(g). The pressure–temperature (p–T) relations for the major species over 3 V 2 O 8 (s) + NiO(s)> region were deduced in the experimental temperature range of 1476–1581 K. From the p–T and equilibrium constant–temperature (K–T) relations, based on the second and third law methods of thermodynamics, the enthalpy changes and temperature dependence of Gibbs energy of four reactions were evaluated. Subsequently, the enthalpy of formation at 298 K and Gibbs energy of formation of Ni 3 V 2 O 8 (s) as a function of temperature were deduced. Conclusions Thermodynamic properties of the ternary compound Ni 3 V 2 O 8 (s) were deduced employing HT‐KEMS measurements.

Rapid Communications in Mass SpectrometryVol. 40(23)
Homi Bhabha National Institute (IN), Indira Gandhi Centre for Atomic Research (IN)
Openalex Percentile: Top 31%
Catalysis and Oxidation Reactions
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