Ultrathin, Transferred Layers of Silicon Oxynitrides as Tunable Biofluid Barriers for Bioresorbable Electronic Systems

Abstract: Bio/ecoresorbable electronic systems create unique opportunities in implantable medical devices that serve a need over a finite time period and then disappear naturally to eliminate the need for extraction surgeries. A critical challenge in the development of this type of technology is in materials that can serve as thin, stable barriers to surrounding ground water or biofluids, yet ultimately dissolve completely to benign end products. This paper describes a class of inorganic material (silicon oxynitride, SiON) that can be formed in thin films by plasma‐enhanced chemical vapor deposition for this purpose. In vitro studies suggest that SiON and its dissolution products are biocompatible, indicating the potential for its use in implantable devices. A facile process to fabricate flexible, wafer‐scale multilayer films bypasses limitations associated with the mechanical fragility of inorganic thin films. Systematic computational, analytical, and experimental studies highlight the essential materials aspects. Demonstrations in wireless light‐emitting diodes both in vitro and in vivo illustrate the practical use of these materials strategies. The ability to select degradation rates and water permeability through fine tuning of chemical compositions and thicknesses provides the opportunity to obtain a range of functional lifetimes to meet different application requirements.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Ultrathin, Transferred Layers of Silicon Oxynitrides as Tunable Biofluid Barriers for Bioresorbable Electronic Systems ; day:11 ; month:02 ; year:2024 ; extent:14
Advanced materials ; (11.02.2024) (gesamt 14)

Creator
Hu, Ziying
Zhao, Jie
Guo, Hexia
Li, Rui
Wu, Mingzheng
Shen, Jiahong
Wang, Yue
Qiao, Zheng
Xu, Yue
Haugstad, Greg
An, Dongqi
Xie, Zhaoqian
Kandela, Irawati
Nandoliya, Khizar R.
Chen, Yu
Yu, Yi
Yuan, Qunyao
Hou, Junyu
Deng, Yujun
AlDubayan, Abdulaziz H.
Yang, Quansan
Zeng, Liangsong
Lu, Di
Koo, Jahyun
Bai, Wubin
Song, Enming
Yao, Shenglian
Wolverton, Chris
Huang, Yonggang
Rogers, John A.

DOI
10.1002/adma.202307782
URN
urn:nbn:de:101:1-2024021214121640273065
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:35 AM CEST

Data provider

This object is provided by:
Deutsche Nationalbibliothek. If you have any questions about the object, please contact the data provider.

Associated

  • Hu, Ziying
  • Zhao, Jie
  • Guo, Hexia
  • Li, Rui
  • Wu, Mingzheng
  • Shen, Jiahong
  • Wang, Yue
  • Qiao, Zheng
  • Xu, Yue
  • Haugstad, Greg
  • An, Dongqi
  • Xie, Zhaoqian
  • Kandela, Irawati
  • Nandoliya, Khizar R.
  • Chen, Yu
  • Yu, Yi
  • Yuan, Qunyao
  • Hou, Junyu
  • Deng, Yujun
  • AlDubayan, Abdulaziz H.
  • Yang, Quansan
  • Zeng, Liangsong
  • Lu, Di
  • Koo, Jahyun
  • Bai, Wubin
  • Song, Enming
  • Yao, Shenglian
  • Wolverton, Chris
  • Huang, Yonggang
  • Rogers, John A.

Other Objects (12)