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首页> 外文期刊>Journal of Microelectromechanical Systems >A High Power Density Micro-Thermoelectric Generator Fabricated by an Integrated Bottom-Up Approach
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A High Power Density Micro-Thermoelectric Generator Fabricated by an Integrated Bottom-Up Approach

机译:通过集成的自下而上方法制造的高功率密度微热发电机

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In this paper, we report a high power density cross-plane micro-thermoelectric generator (TEG) fabricated by integrating pulsed electroplating with micro-fabrication processes. The TEG consists of a total of 127 pairs of n-type Bi2Te3 and p-type Sb2Te3 thermoelectric pillars embedded in a SU-8 matrix in order to enhance the overall mechanical strength of the device. Both bottom and top electrical connections are formed by electroplating, which is advantageous because of facile and low cost fabrication and low parasitic electrical resistances. The device demonstrates a maximum power of 2990 at a temperature difference of 52.5 K, corresponding to a power density as high as 9.2 mW cm . The power density of our device is more than two times the highest value reported for the electroplated micro-TEGs in the literature, which can be attributed to the low internal resistance and high packing density of thermoelectric pillars. [2015-0348]
机译:在本文中,我们报告了通过将脉冲电镀与微细加工工艺相集成而制造的高功率密度横断面微热电发生器(TEG)。 TEG由嵌入SU-8矩阵中的总共127对n型Bi2Te3和p型Sb2Te3热电柱组成,以增强设备的整体机械强度。底部和顶部电连接均通过电镀形成,这由于容易且低成本的制造以及较低的寄生电阻而具有优势。该器件在52.5 K的温差下显示2990的最大功率,对应于高达9.2 mW cm的功率密度。我们设备的功率密度是文献中报道的电镀微型TEG的最高值的两倍以上,这可以归因于热电柱的低内阻和高堆积密度。 [2015-0348]

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