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The invention discloses a micro-thermoelectric cell made of thermal differential material with structure of one dimension linear array.

本发明公开了一种由一维纳米线阵列结构温差电材料构制的微温差电池。

Low dimensional thermoelectric materials have attacted much attention due to their extensive application on pelter coolers and power generators.

低维温差电材料在温差制冷和温差发电方面展现的广阔应用前景引起了科学界的普遍关注。

Low dimensional thermoelectric material s have attacted much attention due to their extensive application on pelter coolers and power generators.

低维温差电材料在温差制冷和温差发电方面展现的广阔应用前景引起了科学界的普遍关注。

Three basic effects were introduced in this paper: Seebeck effect, Peltier effect, Thomson effect. Some important performance parameters of the thermoelectric generator and the thermoelectric cooler were also introduced.

本文对三个基本效应作了较详细的介绍:塞贝克效应、珀尔帖效应和汤姆逊效应,并且,详细介绍了温差发电器和温差电制冷器的重要参数。

The thermoelectric effect which is the rationale of semiconductor TEG is carried on detailed showing in the thesis, specially the process.

温差电效应是半导体温差发电的理论基础,本论文对其基本原理进行了较详细的说明,尤其是对与塞贝克效应紧密联系的温差发电过程作了清晰的阐述。

The structures of the thermoelectric couple and generator were described in detail in this paper. Also, the performance of the Radioactive Isotope Thermoelectric Generator was introduced, which has been used in space power, for example SNAP-7B RTG, SNAP-10A, GPHS-RTG.

本文对温差电偶的结构和温差发电器的构造作了详细的叙述,并且,对应用于航天的放射性同位素温差发电器作了介绍,比如SNAP-7B RTG、SNAP-10A系统、通用热源热电转换器。

The thermoelectric effect of CNT films has also been studied in this research. The study shows that the thermoelectric force is proportional to temperature difference. The Seebeck coefficience is -15μv/K~-60μv/K, which exhibits that CNT films are n-type.

另外,对碳纳米管膜的温差电效应进行了研究,发现其温差电动势与温差成正比,碳纳米管膜的塞贝克系数在-15μv/K~-60μv/K 之间,碳纳米管膜呈n 型半导体性质。

Following the development of merits of thermoelectric material, application of it will be great in the future.

相信随着温差电材料优值的发展,温差发电的前景非常广阔。

Now electrodeposited thermoelectric film arouses the interest of the researchers, not only for the fitting of micro-electronics, but also the guidance to the electrodepositing nanowire.

对于薄膜温差电材料电沉积的研究也引起了科学家的广泛兴趣,薄膜材料不仅适应了目前微电子系统的发展趋势,而且对电沉积纳米线的研究具有指导意义。

As a special micro-power source, thermoelectric micro-generator is of interest for its applications in Micro-Electro-Mechanical Systems. Electrochemical deposition method took the advantage at the fabrication of thermoelectric material in micrometer scale. In this paper, the detailed reduction processes of Bi~(3+) and HTeO~(2+) were studied for the first time. And thermoelectric nanowires were also prepared by electrochemical deposition. On the basic study of thermoelectric material, detailed exploration was made to the design and fabrication process of thermoelectric micro-generator.

作为一种特殊的微动力能源,微型温差发电器在微机电系统中的应用前景引起了人们极大的兴趣,电化学沉积方法在制备微米级尺寸的温差电材料方面具有显著的优势,本文对Bi~(3+)和HTeO~(2+)离子的电化学还原过程展开了详细的研究,并尝试了利用电化学沉积方法制备Bi_2Te_3纳米线材料,在温差电材料研究的基础上,对微型温差发电器的结构设计和制造过程进行了详细的探讨。

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