首页> 外文期刊>Coatings >Electronic and Thermoelectric Properties of V2O5, MgV2O5, and CaV2O5
【24h】

Electronic and Thermoelectric Properties of V2O5, MgV2O5, and CaV2O5

机译:V2O5,MGV2O5和CAV2O5的电子和热电性能

获取原文
           

摘要

Developing new thermoelectric materials with high performance can broaden the thermoelectric family and is the key to fulfill extreme condition applications. In this work, we proposed two new high-temperature thermoelectric materials—MgV2O5 and CaV2O5—which are derived from the interface engineered V2O5. The electronic and thermoelectric properties of V2O5, MgV2O5, and CaV2O5 were calculated based on first principles and Boltzmann semi-classical transport equations. It was found that although V2O5 possessed a large Seebeck coefficient, its large band gap strongly limited the electrical conductivity, hence hindering it from being good thermoelectric material. With the intercalation of Mg and Ca atoms into the van der Waals interfaces of V2O5, i.e., forming MgV2O5 and CaV2O5, the electronic band gaps could be dramatically reduced down to below 0.1 eV, which is beneficial for electrical conductivity. In MgV2O5 and CaV2O5, the Seebeck coefficient was not largely affected compared to V2O5. Consequently, the thermoelectric figure of merit was expected to be improved noticeably. Moreover, the intercalation of Mg and Ca atoms into the V2O5 van der Waals interfaces enhanced the anisotropic transport and thus provided a possible way for further engineering of their thermoelectric performance by nanostructuring. Our work provided theoretical guidelines for the improvement of thermoelectric performance in layered oxide materials.
机译:开发高性能的新型热电材料可以拓宽热电家庭,是满足极端条件应用的关键。在这项工作中,我们提出了两种新的高温热电材料-MGV2O5和CAV2O5 - 源自界面工程V2O5。基于第一原理和Boltzmann半古典传输方程来计算V2O5,MGV2O5和CAV2O5的电子和热电性能。发现虽然V2O5具有大的塞培克系数,但其大的带隙强烈限制了电导率,因此阻碍了它是良好的热电材料。随着Mg和Ca原子的插入到V2O5的范德华界面,即形成Mgv2O5和Cav2O5,电子带隙可以显着减小到低于0.1eV,这有利于导电性。在MgV2O5和Cav2O5中,与V2O5相比,塞贝克系数没有很大程度上受到影响。因此,预期显着提高了优异的热电值。此外,Mg和Ca原子的插入到V2O5范德瓦尔斯接口增强了各向异性传输,因此提供了通过纳米结构化进一步工程其热电性能的可能方法。我们的工作提供了改进层状氧化物材料的热电性能的理论准则。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号