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Influence of pressure assisted sintering and reaction sintering on microstructure and thermoelectric properties of bi-doped and undoped calcium cobaltite

机译:压力辅助烧结和反应烧结对双掺杂和无掺杂钴酸钙组织和热电性能的影响

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摘要

Calcium cobaltite (Ca3Co4O9) is considered as one of the most promising thermoelectric p-type oxides for energy harvesting applications at temperatures above 500 degrees C. It is challenging to sinter this material as its stability is limited to 920 degrees C. To facilitate a practicable and scalable production of Ca3Co4O9 for multilayer generators, a systematic study of the influence of powder calcination, Bi doping, reaction sintering, and pressure-assisted sintering (PAS) on microstructure and thermoelectric properties is presented. Batches of doped, undoped, calcined, and not calcined powders were prepared, tape-cast, and sintered with and without uniaxial pressure at 900 degrees C. The resulting phase compositions, microstructures, and thermoelectric properties were analyzed. It is shown that the beneficial effect of Bi doping observed on pressureless sintered samples cannot be transferred to PAS. Liquid phase formation induces distortions and abnormal grain growth. Although the Seebeck coefficient is increased to 139 mu V/K by Bi doping, the power factor is low due to poor electrical conductivity. The best results were achieved by PAS of calcined powder. The dense and textured microstructure exhibits a high power factor of 326 mu W/mK(2) at 800 degrees C but adversely high thermal conductivity in the relevant direction. The figure of merit is higher than 0.08 at 700 degrees C. Published under license by AIP Publishing.
机译:钴酸钙(Ca3Co4O9)被认为是在500摄氏度以上的温度下能量收集应用中最有希望的热电p型氧化物之一。由于其稳定性限制在920摄氏度,因此烧结该材料具有挑战性。以及用于多层发生器的Ca3Co4O9的可扩展生产,对粉末煅烧,Bi掺杂,反应烧结和压力辅助烧结(PAS)对组织和热电性能的影响进行了系统的研究。制备一批掺杂,未掺杂,煅烧和未煅烧的粉末,流延并在有和没有单轴压力的情况下在900摄氏度下烧结。分析所得相组成,微结构和热电性能。结果表明,Bi掺杂对无压烧结样品的有益作用不能转移到PAS中。液相形成会引起变形和异常晶粒长大。尽管通过Bi掺杂将塞贝克系数提高到139μV / K,但由于导电性差,功率因数仍然很低。通过煅烧粉末的PAS可获得最佳结果。致密且纹理化的微结构在800摄氏度时展现出326μW / mK(2)的高功率因数,但在相关方向上却具有不利的高导热性。品质因数在700摄氏度时高于0.08。在AIP Publishing的许可下发布。

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