Spray solution combustion synthesis of undoped Ca3Co4O9: High thermoelectric performance through grain orientation and moderate texture

S Stanislav Yurlov (University of Science and Technology MISIS 1 , Moscow 119049,) E Evgeniya Chernyshova (University of Science and Technology MISIS 1 , Moscow 119049,) K Ksenia Stepanova (University of Science and Technology MISIS 1 , Moscow 119049,) S Sergey Yudin (University of Science and Technology MISIS 1 , Moscow 119049,) X Xianli Su D Dmitry Moskovskikh (University of Science and Technology MISIS 1 , Moscow 119049,) V Vladimir Khovaylo (University of Science and Technology MISIS 1 , Moscow 119049,) S Sergey Roslyakov (University of Science and Technology MISIS 1 , Moscow 119049,)

Abstract

Undoped Ca3Co4O9 was synthesized using spray solution combustion synthesis (SSCS) and consolidated through spark plasma sintering (SPS), resulting in a microstructure with moderate texturing [maximum Lotgering factor of 0.35 for the (004) plane] and strongly elongated, densely packed grains oriented perpendicular to the pressing direction. The presence of texture mainly influences the electrical conductivity of the obtained material, which becomes comparable with values reported in the literature for doped Ca3Co4O9. These features allowed one to achieve in the undoped Ca3Co4O9 thermoelectric figure of merit zT of 0.35 at 1050 K, which determines the importance of microstructural architecture. The study highlights that although texturing contributes to increased electrical conductivity, the synergistic combination of grain elongation and boundary architecture is key to achieving significant improvements in the performance of layered materials, demonstrating the importance of optimizing microstructural characteristics to improve functionality. Cobaltite obtained by this route has advantages over the others, due to the significant reduction in ceramic production time, as well as low cost, without the need for expensive alloying elements.

Article Details

Volume / Issue Vol. 126, Issue 19
Published May 12, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (8)

S

Stanislav Yurlov

University of Science and Technology MISIS 1 , Moscow 119049,

E

Evgeniya Chernyshova

University of Science and Technology MISIS 1 , Moscow 119049,

K

Ksenia Stepanova

University of Science and Technology MISIS 1 , Moscow 119049,

S

Sergey Yudin

University of Science and Technology MISIS 1 , Moscow 119049,

X

Xianli Su

D

Dmitry Moskovskikh

University of Science and Technology MISIS 1 , Moscow 119049,

V

Vladimir Khovaylo

University of Science and Technology MISIS 1 , Moscow 119049,

S

Sergey Roslyakov

University of Science and Technology MISIS 1 , Moscow 119049,