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Electron-beam lithography for polymer bioMEMS with submicron features. | LitMetric

Electron-beam lithography for polymer bioMEMS with submicron features.

Microsyst Nanoeng

Department of Biomedical Engineering, University of Southern California, Los Angeles, CA 90089-1111, USA.

Published: November 2016

We present a method for submicron fabrication of flexible, thin-film structures fully encapsulated in biocompatible polymer poly(chloro-p-xylylene) (Parylene C) that improves feature size and resolution by an order of magnitude compared with prior work. We achieved critical dimensions as small as 250 nm by adapting electron beam lithography for use on vapor deposited Parylene-coated substrates and fabricated encapsulated metal structures, including conducting traces, serpentine resistors, and nano-patterned electrodes. Structures were probed electrically and mechanically demonstrating robust performance even under flexion or torsion. The developed fabrication process for electron beam lithography on Parylene-coated substrates and characterization of the resulting structures are presented in addition to a discussion of the challenges of applying electron beam lithography to polymers. As an application of the technique, a Parylene-based neural probe prototype was fabricated with 32 recording sites patterned along a 2 mm long shank, an electrode density surpassing any prior polymer probe.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6444738PMC
http://dx.doi.org/10.1038/micronano.2016.53DOI Listing

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