论文标题
接口电阻对(1-x)la $ _ {0.95} $ sr $ _ {0.05} $ co $ _ {0.95} $ mn $ _ {0.05} $ _ {0.05} $ $ $ $ $ _3 $/(x)
Effect of interface resistance on thermoelectric properties in (1-x)La$_{0.95}$Sr$_{0.05}$Co$_{0.95}$Mn$_{0.05}$O$_3$/(x)WC composite
论文作者
论文摘要
在这项研究中,分散阶段粒径和界面热电阻(r $ _ {int} $)的协同效应(r $ _ {int} $)之间的相位导热率($κ__{ph} $)之间的相位效应(1-x)la $ _ {0.95} $ sr $ _ {0.05} $ co $ _ {0.95} $ mn $ _ {0.05} $ o $ $ $ _3 $/(x)WC热电学复合材料。此外,使用Bruggeman的不对称模型讨论了R $ _ {int} $与Kapitza半径之间的相关性。特别是,polycrystalline la $ _ {0.95} $ sr $ _ {0.05} $ co $ $ _ {0.95} $ Mn $ _ {0.05} $ o $ _3 $样品是使用标准固体状态路线合成的。通过电子显微镜图像证实了WC纳米颗粒的存在。电导率($σ$)增加,随着复合材料中的WC体积分数的增加,Seebeck系数($α$)也会降低。 The simultaneous increase in $σ$ and a decrease in $κ_{ph}$ with the WC volume fraction results in an increased figure of merit (zT) for (1-x)La$_{0.95}$Sr$_{0.05}$Co$_{0.95}$Mn$_{0.05}$O$_3$/(x)WC composite. A maximum zT $\sim$ 0.20 is obtained for (1-x)La$_{0.95}$Sr$_{0.05}$Co$_{0.95}$Mn$_{0.05}$O$_3$/(x)WC composite for x=0.010 at 463 K. The results obtained in the present study shows promise to design thermoelectric composites with考虑到相之间的弹性特性,所需的声子导电性。
In this study, the synergistic effect of the particle size of the dispersed phase and the interface thermal resistance (R$_{int}$) between the phases on the phonon thermal conductivity ($κ_{ph}$) of the (1-x)La$_{0.95}$Sr$_{0.05}$Co$_{0.95}$Mn$_{0.05}$O$_3$/(x)WC thermoelectric composite, is demonstrated. Further, the correlation between the R$_{int}$ and the Kapitza radius is discussed using the Bruggeman's asymmetrical model. In particular, the polycrystalline La$_{0.95}$Sr$_{0.05}$Co$_{0.95}$Mn$_{0.05}$O$_3$ sample is synthesized using a standard-solid state route. The presence of WC nanoparticle is confirmed from the electron microscopy images. Electrical conductivity ($σ$) increases, and the Seebeck coefficient ($α$) decreases with the increase in conducting WC volume fraction in the composite. The simultaneous increase in $σ$ and a decrease in $κ_{ph}$ with the WC volume fraction results in an increased figure of merit (zT) for (1-x)La$_{0.95}$Sr$_{0.05}$Co$_{0.95}$Mn$_{0.05}$O$_3$/(x)WC composite. A maximum zT $\sim$ 0.20 is obtained for (1-x)La$_{0.95}$Sr$_{0.05}$Co$_{0.95}$Mn$_{0.05}$O$_3$/(x)WC composite for x=0.010 at 463 K. The results obtained in the present study shows promise to design thermoelectric composites with desired phonon thermal conductivity considering the elastic properties between the phases.