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新型微温差电池的设计
引用本文:贾法龙,王为,赵秉英,张建中.新型微温差电池的设计[J].电源技术,2004,28(9):569-570,582.
作者姓名:贾法龙  王为  赵秉英  张建中
作者单位:1. 天津大学,化工学院应用化学系,天津,300072
2. 中国电子科技集团公司,第十八研究所,天津,300381
基金项目:国家自然科学基金(50071040),国家973项目子专题(合同号ZM 200103 A01)
摘    要:将纳米材料的高效温差电转化性能和IC(集成电路)制造技术的长处相结合,设计出了一种全新结构的微型温差电池,这种全新结构的微型温差电池采用以多孔氧化铝模板为载体的n型和p型纳米线阵列温差电材料构成,其独特的层状结构有效地发挥了纳米线温差电材料的高效温差电转换性能,它通过将纳米线先并联再串联的方式使微型温差电池获得极高的电压输出,微型温差电池的厚度不超过100μm。

关 键 词:微型温差电池  结构设计  纳米线阵列  Bi_2Te_3
文章编号:1002-087X(2004)09-0569-02
修稿时间:2003年11月25

A New Type of Micro-thermoelectric Power Generator
JIA Fa-long,WANG Wei,ZHAO Bing-ying,ZHANG Jian-zhong.A New Type of Micro-thermoelectric Power Generator[J].Chinese Journal of Power Sources,2004,28(9):569-570,582.
Authors:JIA Fa-long  WANG Wei  ZHAO Bing-ying  ZHANG Jian-zhong
Affiliation:JIA Fa-long1,WANG Wei1,ZHAO Bing-ying1,ZHANG Jian-zhong2
Abstract:Miniaturized solid-state devices such as MEMS, micro-electrical system and even "system on a chip" are of interest for variety of space and terrestrial applications. For those micro-systems, micro-power sources with low power, high voltage output are necessary. To meet the promising requirement, we combined the high thermoelectric performance of nanowires with the advantage of IC fabrication process and designed a totally new type of micro-thermoelectric power generator which is comprised of N-type and P-type Bi2Te3 nanowire array thermoelectric materials. The nanowires array are embedded in the alumina nanoporous film and the unique laminar structure of microgenerator makes thermo-electricity conversion more effective. A high voltage output is obtained by the connection of the nanowires in parallel and then in series. The designed micropower generator possesses a film like configuration and its thickness is less than 100 mm.
Keywords:micropower thermoelectric generator  structural design  nanowire array  Bi2Te3  
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