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首页> 外文期刊>Journal of the European Ceramic Society >Tailoring Ca3Co4O9 microstructure and performances using a transient liquid phase sintering additive
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Tailoring Ca3Co4O9 microstructure and performances using a transient liquid phase sintering additive

机译:使用瞬时液相烧结添加剂定制Ca3Co4O9的微观结构和性能

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摘要

A flexible, adaptable, economical and easily scalable processing route, allowing microstructural control, is presented. It involves classical solid state sintering method and addition of liquid promoting compound. Controlled porosity and high thermoelectric performance have been attained in Ca3Co4O9 by K2CO3 additions, drastically improving the sintering procedure. K2CO3 behaves as transient liquid phase, providing microstructural benefits, vanishing during sintering. Electrical resistivity was improved by enhanced grains connectivity and growth. Significant increase in Seebeck coefficient at high temperatures has been produced while lattice thermal conductivity was unaffected. The best ZT value, estimated at 800 degrees C, assuming the thermal conductivity value at 140 degrees C, is 0.35 for 5 wt.% K2CO3 samples. These values are significantly higher than that obtained in highly-dense textured materials at the same temperature. The results suggest that this approach is very effective for preparing highly -performing Ca3Co4O9-based thermoelectric materials with relatively high porosity to control thermal conductivity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种灵活,适应性强,经济且易于扩展的加工路线,可进行微结构控制。它涉及经典的固态烧结方法和液体促进剂的添加。通过添加K2CO3,可以在Ca3Co4O9中获得可控的孔隙率和高热电性能,从而大大改善了烧结过程。碳酸钾表现为瞬时液相,具有微观结构优势,在烧结过程中消失。通过增强晶粒的连通性和生长来改善电阻率。在不影响晶格热导率的情况下,高温下的塞贝克系数得到了显着提高。假设在140摄氏度下的热导率值为800摄氏度,则对于5 wt。%的K2CO3样品,最佳ZT值为0.35。这些值明显高于在相同温度下在高密度织构材料中获得的值。结果表明,该方法对于制备具有较高孔隙率以控制热导率的高性能Ca3Co4O9基热电材料非常有效。 (C)2015 Elsevier Ltd.保留所有权利。

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