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High-temperature thermoelectric power generation module of layered oxides improved by multistage structure with Bi-Te module

机译:Bi-Te模块通过多级结构改进的层状氧化物高温热电发电模块

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A novel multistage module of layered oxides combined with Bi-Te module has been developed for high-temperature thermoelectric power generation. For the oxides module, we used highly-textured [Ca/sub 2/CoO/sub 3/]O/sub 0.62/[CoO/sub 2/] (p-type) and Ca-doped (ZnO)/sub 3/In/sub 2/O/sub 3/ (n-type) ceramics. We employed a bridge-type thermoelectric module using 10 p-n pairs of the layered oxides. In addition, we connected the oxides module to Bi-Te modules at its both sides to improve performance. The module typically gave temperature differences of 415 K and 60 K for the oxides and Bi-Te modules, respectively, with an exposure of the alcohol lamp. The maximum output power and power density were 704 mW and 440 mW/cm/sup 2/. The stability without any passivation provided a practical demonstration for high-temperature thermoelectric applications.
机译:已经开发了一种与BI-TE模块联合的分层氧化物的新型多级模块,用于高温热电发电。对于氧化物模块,我们使用高度纹理的[CA / SUB 2 / COO / SUB 3 /] O / SUB 0.62 / [COO / SUB 2 /](P型)和CA掺杂(ZnO)/ Sub 3 /在/亚2 / o / sub 3 /(n型)陶瓷。我们采用了一种使用10 p-n对层状氧化物的桥式热电模块。此外,我们将氧化物模块连接到两侧的Bi-TE模块,以提高性能。该模块通常分别为氧化物和Bi-TE模块提供415k和60k的温度差,含有醇灯。最大输出功率和功率密度为704 MW和440 mW / cm / sup 2 /。没有任何钝化的稳定性提供了高温热电应用的实际演示。

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