Effective Thermal Conductivity of SrBiTiO-LaSrMnO Oxide composite: Role of Particle Size and Interface Thermal Resistance
arXiv:2009.02218 · doi:10.1016/j.jeurceramsoc.2020.08.069
Abstract
We present a novel approach to reduce the thermal conductivity () in thermoelectric composite materials using acoustic impedance mismatch and the Debye model. Also, the correlation between interface thermal resistance (R) and the particle size of the dispersed phase on the k of the composite is discussed. In particular, the of an oxide composite which consists of a natural superlattice Aurivillius phase (SrBiTiO) as a matrix and perovskite (LaSrMnO) as a dispersed phase is investigated. A significant reduction in the of composite, even lower than the of the matrix when the particle size of LaSrMnO is smaller than the Kapitza radius (a) is observed, depicting that R dominates for particle size lower than a due to increased surface to volume ratio. The obtained results have the potential to provide new directions for engineering composite thermoelectric systems with desired thermal conductivity and promising in the field of energy harvesting.
21 pages, 8 Figures, 5 Tables
References in corpus (3)
- Application of flash method in the measurements of interfacial thermal resistance in layered and particulate composite materials
- Effective Thermal Conductivity of SrBiTiO-LaSrMnO Oxide composite: Role of Particle Size and Interface Thermal Resistance
- Colossal Seebeck coefficient in Aurivillius Phase-Perovskite Oxide Composite
Cited by in corpus (5)
- Synergistic effect of workfunction and acoustic impedance mismatch for improved thermoelectric performance in GeTe/WC composite
- Effective Thermal Conductivity of SrBiTiO-LaSrMnO Oxide composite: Role of Particle Size and Interface Thermal Resistance
- Thermal conductivity of PbTe-CoSb3 bulk polycrystalline composite: the role of microstructure and interface thermal resistance
- Effect of interface resistance on thermoelectric properties in (1-x)LaSrCoMnO/(x)WC composite
- Improved Thermoelectric Properties in (1-x)LaCoO3/(x)La0.7Sr0.3CoO3 Composite