Electrodeposition of High-Functional Metal Oxide on Noble Metal for MEMS Devices

W. Chiu, Chun-Yi Chen, T. Chang, T. Hashimoto, H. Kurosu
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Abstract

MEMS gas sensors could exert a significant impact on the automotive sec-tor since future legislation is expected to stipulate the monitoring of NO x and unburned fuel gases in vehicle exhausts. Among the materials, zinc oxide and TiO 2 are the most promising and extensively used materials for monitoring of NO x gas since zinc oxide and TiO 2 show the high sensitivity, good stability, and fast response. Electrochemistry is a potential method to fabricate zinc oxide and TiO 2 for the applications since it is carried out at relatively low temperature and can cooperate with photolithography, which is an important process in MEMS. This study integrated zinc oxide/gold-layered structure and TiO 2 /NiP hybrid structure on elastic fabrics, respectively, to realize an elastic gas sensor. Electroless plating (EP) and cathodic deposition were used to metallize and deposit metal oxides on elastic fabrics. Supercritical carbon dioxide (scCO 2 ) was further introduced into the electrochemical process to enhance the composite reliability.
用于MEMS器件的贵金属电沉积高功能金属氧化物
MEMS气体传感器可能会对汽车行业产生重大影响,因为未来的立法预计将规定监测汽车尾气中的nox和未燃烧的燃料气体。其中,氧化锌和二氧化钛具有灵敏度高、稳定性好、响应速度快等特点,是最具应用前景的nox气体监测材料。电化学是一种有潜力的制备氧化锌和二氧化钛的方法,因为它在相对较低的温度下进行,并且可以与光刻配合,这是MEMS中的一个重要工艺。本研究将氧化锌/金层状结构和二氧化钛/NiP混合结构分别集成在弹性织物上,实现弹性气体传感器。采用化学镀(EP)和阴极沉积技术在弹性织物上镀金属和沉积金属氧化物。在电化学过程中进一步引入超临界二氧化碳(scCO 2),以提高复合材料的可靠性。
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