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聚对二甲苯C微机电系统微纳制造技术及注意事项

Techniques and Considerations in the Microfabrication of Parylene C Microelectromechanical Systems.

作者信息

Ortigoza-Diaz Jessica, Scholten Kee, Larson Christopher, Cobo Angelica, Hudson Trevor, Yoo James, Baldwin Alex, Weltman Hirschberg Ahuva, Meng Ellis

机构信息

Department of Biomedical Engineering, University of Southern California, Los Angeles, CA 90089, USA.

Ming Hsieh Department of Electrical Engineering, University of Southern California, Los Angeles, CA 90089, USA.

出版信息

Micromachines (Basel). 2018 Aug 22;9(9):422. doi: 10.3390/mi9090422.

Abstract

Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant microelectromechanical systems (MEMS) devices. Historically, Parylene C has been employed as an encapsulation material for medical implants, such as stents and pacemakers, due to its strong barrier properties and biocompatibility. In the past few decades, the adaptation of planar microfabrication processes to thin film Parylene C has encouraged its use as an insulator, structural and substrate material for MEMS and other microelectronic devices. However, Parylene C presents unique challenges during microfabrication and during use with liquids, especially for flexible, thin film electronic devices. In particular, the flexibility and low thermal budget of Parylene C require modification of the fabrication techniques inherited from silicon MEMS, and poor adhesion at Parylene-Parylene and Parylene-metal interfaces causes device failure under prolonged use in wet environments. Here, we discuss in detail the promises and challenges inherent to Parylene C and present our experience in developing thin-film Parylene MEMS devices.

摘要

聚对二甲苯C是一种用于构建柔性、生物相容性和耐腐蚀微机电系统(MEMS)器件的有前途的材料。从历史上看,由于其强大的阻隔性能和生物相容性,聚对二甲苯C一直被用作医疗植入物(如支架和起搏器)的封装材料。在过去几十年中,平面微加工工艺对聚对二甲苯C薄膜的适应性促使其被用作MEMS和其他微电子器件的绝缘体、结构材料和衬底材料。然而,聚对二甲苯C在微加工过程以及与液体接触使用时会带来独特的挑战,特别是对于柔性薄膜电子器件。具体而言,聚对二甲苯C的柔韧性和低热预算要求对从硅MEMS继承而来的制造技术进行改进,并且聚对二甲苯-聚对二甲苯和聚对二甲苯-金属界面处的附着力较差,会导致器件在潮湿环境中长期使用时出现故障。在此,我们详细讨论聚对二甲苯C固有的前景和挑战,并介绍我们在开发薄膜聚对二甲苯MEMS器件方面的经验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a62/6187609/f804ba45cfb2/micromachines-09-00422-g001.jpg

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