Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/7548
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dc.contributor.authorKumar, Y. B.Kishoreen_US
dc.date.accessioned2022-03-17T01:00:00Z-
dc.date.accessioned2022-03-21T11:12:00Z-
dc.date.available2022-03-17T01:00:00Z-
dc.date.available2022-03-21T11:12:00Z-
dc.date.issued2019-
dc.identifier.citationPanghal, A., Kulriya, P. K., Kumar, Y., Singh, F., & Singh, N. L. (2019). Investigations of atomic disorder and grain growth kinetics in polycrystalline La2Zr2O7. Applied Physics A: Materials Science and Processing, 125(6) doi:10.1007/s00339-019-2720-8en_US
dc.identifier.issn0947-8396-
dc.identifier.otherEID(2-s2.0-85066132279)-
dc.identifier.urihttps://doi.org/10.1007/s00339-019-2720-8-
dc.identifier.urihttps://dspace.iiti.ac.in/handle/123456789/7548-
dc.description.abstractIn the present study, we investigated the impact of annealing temperature and time on grain growth and atomic order/disorder in La2Zr2O7 pyrochlore. Experimental results showed that the sample remains in the pyrochlore phase at higher annealing temperature (1500 °C) for a longer time (96 h). The influence of grain growth and atomic order/disorder on the structural properties could be effective in designing and tailoring the pyrochlore materials for energy applications. La2Zr2O7 with different degrees of atomic order was prepared by isothermal annealing at different temperatures (1200 °C, 1300 °C and 1500 °C) for various annealing time (24, 48, and 96 h). Structural and microstructural properties of La2Zr2O7 were investigated using the X-ray diffraction, and Raman spectroscopy techniques. The degree of cation–anion order increases with increasing annealing temperature and time. The curvature-driven grain coarsening of the small grains favored the formation of larger grains. The grain-growth kinetics is studied using the Arrhenius equation Gtn-G0n=k0exp(-EaRT)tq and activation energy for grain growth is found to be 590 ± 21 kJ/mol. A quantitative analysis has been presented to investigate the cation/anion order and microstructural evolution in pure phase polycrystalline La2Zr2O7. © 2019, Springer-Verlag GmbH Germany, part of Springer Nature.en_US
dc.language.isoenen_US
dc.publisherSpringer Verlagen_US
dc.sourceApplied Physics A: Materials Science and Processingen_US
dc.subjectActivation energyen_US
dc.subjectAtomsen_US
dc.subjectCoarseningen_US
dc.subjectGrowth kineticsen_US
dc.subjectIsothermal annealingen_US
dc.subjectLanthanum compoundsen_US
dc.subjectPositive ionsen_US
dc.subjectZirconium compoundsen_US
dc.subjectAnnealing temperaturesen_US
dc.subjectArrhenius equationen_US
dc.subjectAtomic disorderen_US
dc.subjectEnergy applicationsen_US
dc.subjectGrain coarseningen_US
dc.subjectMicro-structural propertiesen_US
dc.subjectPyrochlore materialen_US
dc.subjectPyrochlore phaseen_US
dc.subjectGrain growthen_US
dc.titleInvestigations of atomic disorder and grain growth kinetics in polycrystalline La2Zr2O7en_US
dc.typeJournal Articleen_US
Appears in Collections:Department of Metallurgical Engineering and Materials Sciences

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