Fabrication of p- and n-type Thermoelectric Cobalt Oxides through the Powder-In-Tube Method

V. Braccini, C. Fanciulli, C. Bernini, M. Vignolo, M. Putti, G. Grasso, A. Siri
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引用次数: 2

Abstract

We report the synthesis and the physical characterization of p- and n-type thermoelectric oxides, i.e. respectively NaxCoO 2 with x nominally close to 0.75 and LaNi1-xCoxO3 with x nominally equal to 0.3, materials that can be used to build unicouples and therefore thermoelectric modules. In order to take advantage of the anisotropy of the NaxCoO2 crystal structure and of the resistivity, the powder-in-tube method usually used to fabricate superconducting tapes has been employed for the first time to produce thermoelectric wires and tapes, also based on the similarity between the thermoelectric cobalt oxides and the superconducting cuprates. Connectivity was improved through drawing, while texturing was induced in tapes through flat-rolling. This made it possible to significantly reduce the resistivity value, thus enhancing the power factor and the figure of merit of such oxides. Various cold working procedures have been exploited: this method is a fast, reliable way to produce TE legs on a large scale and it has been applied also to the production of the n-type LaNi1-xCoxO3
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管内粉末法制备p型和n型热电钴氧化物
我们报道了p型和n型热电氧化物的合成和物理特性,即分别是x名义上接近0.75的NaxCoO 2和x名义上等于0.3的LaNi1-xCoxO3,这些材料可用于构建单偶和热电模块。为了利用NaxCoO2晶体结构的各向异性和电阻率的优势,利用热电性钴氧化物与超导铜酸盐的相似性,首次采用了制备超导带的管内粉末法来制备热电丝和热电带。通过拉伸提高了胶带的连通性,而通过平轧引起了胶带的变形。这使得显著降低电阻率值成为可能,从而提高了这种氧化物的功率因数和性能值。开发了多种冷加工工艺:该方法是一种快速、可靠的大规模生产TE支腿的方法,并已应用于n型LaNi1-xCoxO3的生产
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