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Fabrication of flexible polymer bio-MEMS with submicron features

机译:具有亚微米特征的柔性聚合物生物微机电系统的制造

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We present a fabrication method for thin-film polymer MEMS that achieves an order of magnitude improvement in feature size and resolution. Specifically, we modified the electron beam lithography (EBL) process for biocompatible poly(chloro-para-xylylene) (Parylene C), enabling flexible, encapsulated titanium structures with features as small as 100 nm. The mechanical, electrical and material properties of these Parylene nanodevices were investigated, and strategies to further reduce feature size and achieve batch scale nanofabrication are discussed.
机译:我们提出了一种用于薄膜聚合物MEMS的制造方法,该方法可实现特征尺寸和分辨率的数量级提高。具体来说,我们修改了生物相容性聚对氯二甲苯(Parylene C)的电子束光刻(EBL)工艺,从而实现了具有100 nm小特征的柔性封装钛结构。研究了这些聚对二甲苯纳米器件的机械,电学和材料性能,并讨论了进一步减小特征尺寸并实现批生产规模纳米加工的策略。

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