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Development of Perovskite-Type Materials for Thermoelectric Application

机译:钙钛矿型热电材料的开发

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摘要

Oxide perovskite materials have a long history of being investigated for thermoelectric applications. Compared to the state-of-the-art tin and lead chalcogenides, these perovskite compounds have advantages of low toxicity, eco-friendliness, and high elemental abundance. However, because of low electrical conductivity and high thermal conductivity, the total thermoelectric performance of oxide perovskites is relatively poor. Variety of methods were used to enhance the TE properties of oxide perovskite materials, such as doping, inducing oxygen vacancy, embedding crystal imperfection, and so on. Recently, hybrid perovskite materials started to draw attention for thermoelectric application. Due to the low thermal conductivity and high Seebeck coefficient feature of hybrid perovskites materials, they can be promising thermoelectric materials and hold the potential for the application of wearable energy generators and cooling devices. This mini-review will build a bridge between oxide perovskites and burgeoning hybrid halide perovskites in the research of thermoelectric properties with an aim to further enhance the relevant performance of perovskite-type materials.
机译:氧化物钙钛矿材料在热电应用方面已有很长的研究历史。与最先进的锡和铅硫属元素化物相比,这些钙钛矿化合物具有毒性低,生态友好和元素丰度高的优点。然而,由于低电导率和高热导率,氧化物钙钛矿的总热电性能相对较差。各种各样的方法被用来增强氧化物钙钛矿材料的TE特性,例如掺杂,诱导氧空位,嵌入晶体缺陷等。最近,混合钙钛矿材料开始引起热电应用的注意。由于混合钙钛矿材料的低热导率和高塞贝克系数特性,它们可以成为有前途的热电材料,并为可穿戴式能量发生器和冷却装置的应用提供了潜力。这篇小型综述将在热电性能研究中建立氧化物钙钛矿与新兴杂化卤化物钙钛矿之间的桥梁,以进一步提高钙钛矿型材料的相关性能。

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