Academic Thesis

Basic information

Name Sakane Genta
Belonging department
Occupation name
researchmap researcher code 1000194578
researchmap agency Okayama University of Science

Title

Thermodynamic properties of transition-metal-doped cerium oxide with fluorite crystal structures

Bibliography Type

Joint Author

Author

Takaki Nishimura, Tatsuya Kodama, Kouji Chiba, Genta Sakane, Tomoko Takashita, Hiroki Yamamoto, Tomohiko Ishii

Summary

To identify factors that enhance thermochemical redox reaction efficiency, we have investigated the thermochemical properties of transition-metal-doped cerium oxide. This study examines thermodynamic parameters using vibrational entropy rather than configurational entropy and investigates how microscopic changes in bonding states affect macroscopic properties. VASP calculations show that vibrational entropy increases slightly upon doping with transition metals (Mn, Fe, Co, Ni); however, the magnitude of this change is limited. Specifically, for 3.125 mol% Mn-doped ceria, the reaction temperature at which Gibbs free energy (ΔG) becomes negative decreases and confirms a substantial improvement in redox reactivity. We further find that transition metal doping reduces the enthalpy required for oxygen vacancy formation, highlighting the dominant role of enthalpy over entropy in driving reaction feasibility when there are no significant changes in the crystal structure. Building on these findings, we present calculated results for ceria samples doped with 12.50 mol% and 25.00 mol% transition metals and compare them with the experimental data. These results provide a clear thermodynamic rationale for optimizing dopant species and concentration in solar redox materials.

Magazine(name)

Physical Chemistry Chemical Physics

Publisher

Royal Society of Chemistry

Volume

28

Number Of Pages

StartingPage

13353

EndingPage

13361

Date of Issue

2026/05

Referee

Exist

Invited

Not exist

Language

English

Thesis Type

Research papers (academic journals)

ISSN

1463-9076

DOI

10.1039/d5cp04695e

NAID

PMID

42171239

J-GLOBAL ID

arXiv ID

ORCID Put Code

DBLP ID