Effect of nanostructure on thermoelectric properties of LaSrMnO in 300-600 K range
arXiv:1709.07205
Abstract
In oxide materials, nanostructuring effect has been found very promising approach for the enhancement of \textit{figure-of-merit}, \textit{ZT}. In the present work, we have synthesized LaSrMnO (LSMO) compound using sol-gel method and samples of crystallite size of 34, 41, and 49 nm were obtained by giving different heat treatment. Seebeck coefficient (), electrical resistivity (), and thermal conductivity () measurements were carried out in 300-600 K temperature range. The systematic change in the values of from -19 V/K to -24 V/K and drastic reduction in the values of from 0.88 W/mK to 0.23 W/mK are observed as crystallite size is reduced from 49 nm to 34 nm at 600 K. Also, fall in the values of in the paramagnetic (PM) insulator phase (400-600 K) are effectively responsible for the increasing trend in the values of \textit{ZT} at high temperature. For the crystallite size of 41 nm, value of \textit{ZT} at 600 K was found to be 0.017, which can be further increased up to 0.045 around 650 K temperature. The predicted value of \textit{ZT} suggests that LSMO can be suitable oxide material for thermoelectric applications at high temperature.
4 pages, 5 figures