材料科学
生物电子学
葡萄糖氧化酶
自愈水凝胶
纳米技术
制作
纳米纤维
固定化酶
电极
生物传感器
聚苯胺
导电聚合物
聚合物
电化学
高分子化学
复合材料
聚合
化学
有机化学
酶
物理化学
病理
医学
替代医学
作者
Ruibo Zhong,Qian Tang,Shaopeng Wang,Hongbo Zhang,Feng Zhang,Mingshu Xiao,Tiantian Man,Xiangmeng Qu,Li Li,Weijia Zhang,Hao Pei
标识
DOI:10.1002/adma.201706887
摘要
Abstract Conducting hydrogels provide great potential for creating designer shape‐morphing architectures for biomedical applications owing to their unique solid–liquid interface and ease of processability. Here, a novel nanofibrous hydrogel with significant enzyme‐like activity that can be used as “ink” to print flexible electrochemical devices is developed. The nanofibrous hydrogel is self‐assembled from guanosine (G) and KB(OH) 4 with simultaneous incorporation of hemin into the G‐quartet scaffold, giving rise to significant enzyme‐like activity. The rapid switching between the sol and gel states responsive to shear stress enables free‐form fabrication of different patterns. Furthermore, the replication of the G‐quartet wires into a conductive matrix by in situ catalytic deposition of polyaniline on nanofibers is demonstrated, which can be directly printed into a flexible electrochemical electrode. By loading glucose oxidase into this novel hydrogel, a flexible glucose biosensor is developed. This study sheds new light on developing artificial enzymes with new functionalities and on fabrication of flexible bioelectronics.
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