首页> 外文期刊>Journal of Vacuum Science & Technology. B, Microelectronics and Nanometer Structures >Ni-carbon nanotubes nanocomposite for robust microelectromechanical systems fabrication
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Ni-carbon nanotubes nanocomposite for robust microelectromechanical systems fabrication

机译:镍碳纳米管纳米复合材料,用于鲁棒的微机电系统制造

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摘要

This article presents a novel fabrication process to enhance the operational performance and reliability of electrothermal microactuators. Carbon nanotubes (CNTs) (outer diameter: 10-20 nm, inner diameter: 5-10 nm, length: 0.5-200 μm) are incorporated in an electrolytic nickel deposition process in which a well-dispersed Ni-CNTs colloidal solution is made by a special acid oxidative method to synthesis a Ni-CNTs nanocomposite for device fabrication. Measurement results show that the microactuator plated with CNTs (0.028 g/L) needs the power requirement less 95% than the pure nickel device at the same output displacement of 3 μm. The performance improvement of the electrothermal microactuator made of the nanocomposite, including device strength and power efficiency, has shown to be similar to the Ni-diamond composites (L. N. Tsai, G. R. Shen, Y. T. Cheng, and W. S. Hsu, The 54th Electronic Components and Technology Conference, June 2004, pp. 472-476)). In addition, the E/ρ ratio of the Ni-CNTs composite can be enhanced to 1.47 times higher than that of pure nickel, which is a fascinating result for resonant device fabrication.
机译:本文提出了一种新颖的制造工艺来增强电热微致动器的操作性能和可靠性。在电解镍沉积工艺中加入碳纳米管(CNT)(外径:10-20 nm,内径:5-10 nm,长度:0.5-200μm),在该工艺中,制备了分散良好的Ni-CNTs胶体溶液通过特殊的酸氧化方法合成了用于器件制造的Ni-CNTs纳米复合材料。测量结果表明,在相同的3μm输出位移下,镀有CNT(0.028 g / L)的微致动器比纯镍器件所需的功率需求少95%。由纳米复合材料制成的电热微致动器的性能改进,包括器件强度和功率效率,已显示出与镍-金刚石复合材料(LN Tsai,GR GR Shen,YT Cheng和WS Wsu,第54电子元件和技术)相似。会议,2004年6月,第472-476页)。此外,与纯镍相比,Ni-CNTs复合材料的E /ρ比可以提高到1.47倍,这对于谐振器件制造来说是一个令人着迷的结果。

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