PUBLICATION

Bio-integrated Electronics Lab.

Journal

2017 Chemical sensing systems that utilize soft electronics on thin elastomeric substrates with open cellular designs

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작성자 최고관리자 작성일 17-10-29 17:06

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Author
Yoon Kyeung Lee, Kyung‐In Jang, Yinji Ma, Ahyeon Koh, Hang Chen, Han Na Jung, Yerim Kim, Jean Won Kwak, Liang Wang, Yeguang Xue, Yiyuan Yang, Wenlong Tian, Yu Jiang, Yihui Zhang, Xue Feng, Yonggang Huang, John A Rogers
Journal
Advanced functional materials
Vol
Vol 27, Issue 9
Page
1605476
Year
2017
DOI
https://doi.org/10.1002/adfm.201605476

Abstract

A collection of materials and device architectures are introduced for thin, stretchable arrays of ion sensors that mount on open cellular substrates to facilitate solution exchange for use in biointegrated electronics. The results include integration strategies and studies of fundamental characteristics in chemical sensing and mechanical response. The latter involves experimental measurements and theoretical simulations that establish important considerations in the design of low modulus, stretchable properties in cellular substrates, and in the realization of advanced capabilities in spatiotemporal mapping of chemicals' gradients. As the chemical composition of extracellular fluids contains valuable information related to biological function, the concepts introduced here have potential utility across a range of skin- and internal-organ-integrated electronics where soft mechanics, fluidic permeability, and advanced chemical sensing capabilities are key requirements.