Highly conductive tissue-like hydrogel interface through template-directed assembly템플릿 기반 어셈블리로 인한 고전도성 유사 조직 하이드로겔 인터페이스

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Over the past decade, conductive hydrogels have received great attention as tissue-interfacing electrodes due to their soft and tissue-like mechanical properties. However, a trade-off between robust tissue-like mechanical properties and good electrical properties has prevented the fabrication of a tough, highly conductive hydrogel and limited its use in bioelectronics. Here, we report a new synthetic method for the realization of highly conductive and mechanically tough hydrogels with tissue-like modulus. We employed a template-directed assembly method, enabling the arrangement of a disorder-free, highly-conductive nanofibrous conductive network inside a highly stretchable, hydrated network. The resultant hydrogel exhibits ideal electrical and mechanical properties as a tissue-interfacing material. Furthermore, it can provide tough adhesion (800 J/m2) with diverse dynamic wet tissue after chemical activation. For the first time, this hydrogel enables suture-free and adhesive-free, high-performance hydrogel bioelectronics. We successfully demonstrated ultra-low voltage neuromodulation and high-quality epicardial electrocardiogram (ECG) signal recording based on in vivo animal models. This template-directed assembly method provides a new platform for hydrogel interfaces for various bioelectronic applications.
Advisors
Kang, Jiheongresearcher강지형researcher
Description
한국과학기술원 :신소재공학과,
Publisher
한국과학기술원
Issue Date
2023
Identifier
325007
Language
eng
Description

학위논문(석사) - 한국과학기술원 : 신소재공학과, 2023.2,[iii, 34 p. :]

Keywords

hydrogel▼aconductive polymer▼aadhesive▼abioelectronics; 하이드로겔▼a전도성 고분자▼a접착성 소재▼a생체 전자 공학

URI
http://hdl.handle.net/10203/308934
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=1032819&flag=dissertation
Appears in Collection
MS-Theses_Master(석사논문)
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