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基于氧化还原活性核壳 PEDOT@PZIF-71 体系的用于柔性生物电子学和超级电容器的生物粘附性和电活性水凝胶。

Bioadhesive and electroactive hydrogels for flexible bioelectronics and supercapacitors enabled by a redox-active core-shell PEDOT@PZIF-71 system.

机构信息

Shenzhen Research Institute of Southwest Jiaotong University, Shenzhen, Guangdong, 518000, China.

Institute of Biomedical Engineering, College of Medicine, Southwest Jiaotong University, Chengdu, Sichuan, 610031, China.

出版信息

Mater Horiz. 2023 Jun 6;10(6):2169-2180. doi: 10.1039/d2mh01234k.

Abstract

Stretchable and conductive hydrogels are rapidly emerging as new generation candidates for wearable devices. However, the poor electroactivity and bioadhesiveness of traditional conductive hydrogels has limited their applications. Herein, a mussel-inspired strategy is proposed to prepare a specific core-shell redox-active system, consisting of a polydopamine (PDA) modified zeolitic imidazolate framework 71 (ZIF-71) core, and a poly 3,4-ethylenedioxythiopene (PEDOT) shell. Owing to the abundant catechol groups, PEDOT can be assembled on the surface of ZIF-71 to create a redox-active system. The core-shell nanoparticles could act as a redox-active nanofiller to develop a conductive polyacrylamide (PAM) hydrogel with energy-storage properties. The core-shell PEDOT@PZIF-71 system provides a mussel-inspired environment in the hydrogel matrix and endows the hydrogel with stretchability and adhesiveness. The hydrogel can be applied as a functional electrode for both bioelectronics and supercapacitors. Moreover, this hydrogel exhibits favorable biocompatibility and can be implanted for biosignal measurement without causing inflammation. This redox-active core-shell PEDOT@PZIF-71 system provides a promising strategy for the design of hydrogel-based wearable electronic devices.

摘要

可拉伸且导电的水凝胶作为新一代可穿戴设备的候选材料正在迅速崛起。然而,传统导电水凝胶的电活性和生物粘附性差限制了它们的应用。本文提出了一种受贻贝启发的策略来制备特定的核壳型氧化还原活性体系,由聚多巴胺(PDA)修饰的沸石咪唑酯骨架 71(ZIF-71)核和聚 3,4-亚乙基二氧噻吩(PEDOT)壳组成。由于丰富的儿茶酚基团,PEDOT 可以组装在 ZIF-71 的表面上,形成氧化还原活性体系。核壳纳米粒子可以作为氧化还原活性纳米填料来开发具有储能性能的导电聚丙烯酰胺(PAM)水凝胶。核壳 PEDOT@PZIF-71 体系在水凝胶基质中提供了贻贝启发的环境,赋予水凝胶拉伸性和粘附性。该水凝胶可用作生物电子学和超级电容器的功能电极。此外,该水凝胶具有良好的生物相容性,可植入进行生物信号测量而不会引起炎症。这种氧化还原活性核壳 PEDOT@PZIF-71 体系为基于水凝胶的可穿戴电子设备的设计提供了有前途的策略。

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