Center for Nanoparticle Research, Institute for Basic Science (IBS), Seoul, 08826, Republic of Korea.
School of Chemical and Biological Engineering and Institute of Chemical Processes, Seoul National University, Seoul, 08826, Republic of Korea.
Adv Healthc Mater. 2021 Sep;10(17):e2002105. doi: 10.1002/adhm.202002105. Epub 2021 Jan 27.
Elastomers are suitable materials for constructing a conformal interface with soft and curvilinear biological tissue due to their intrinsically deformable mechanical properties. Intrinsically soft electronic devices whose mechanical properties are comparable to human tissue can be fabricated using suitably functionalized elastomers. This article reviews recent progress in functionalized elastomers and their application to intrinsically soft and biointegrated electronics. Elastomers can be functionalized by adding appropriate fillers, either nanoscale materials or polymers. Conducting or semiconducting elastomers synthesized and/or processed with these materials can be applied to the fabrication of soft biointegrated electronic devices. For facile integration of soft electronics with the human body, additional functionalization strategies can be employed to improve adhesive or autonomous healing properties. Recently, device components for intrinsically soft and biointegrated electronics, including sensors, stimulators, power supply devices, displays, and transistors, have been developed. Herein, representative examples of these fully elastomeric device components are discussed. Finally, the remaining challenges and future outlooks for the field are presented.
弹性体由于其固有可变形的机械性能,是构建与柔软和曲线状生物组织相适应的界面的合适材料。使用适当功能化的弹性体可以制造出机械性能与人组织相当的固有柔软电子设备。本文综述了功能化弹性体及其在固有柔软和生物整合电子学中的应用的最新进展。弹性体可以通过添加适当的填充剂(纳米材料或聚合物)来进行功能化。用这些材料合成和/或加工的导电或半导体弹性体可用于制造柔软的生物整合电子设备。为了便于将柔软电子产品与人体集成,还可以采用其他功能化策略来改善粘附性或自主愈合性能。最近,已经开发出用于固有柔软和生物整合电子学的器件组件,包括传感器、刺激器、电源设备、显示器和晶体管。在此,讨论了这些全弹性器件组件的代表性实例。最后,提出了该领域面临的剩余挑战和未来展望。