Mussel-inspired hydrogels as tough, self-adhesive and conductive bioelectronics: a review

生物电子学 自愈水凝胶 材料科学 纳米技术 导电聚合物 导电体 粘附 聚合物 胶粘剂 电导率 生物传感器 高分子化学 复合材料 化学 物理化学 图层(电子)
作者
Qin Yu,Zirong Zheng,Xinhao Dong,Rui Cao,Shuheng Zhang,Xiaolin Wu,Xinya Zhang
出处
期刊:Soft Matter [The Royal Society of Chemistry]
卷期号:17 (39): 8786-8804 被引量:25
标识
DOI:10.1039/d1sm00997d
摘要

To overcome the wearable sensor's defects and achieve the goal of robust mechanical properties, long-term adhesion, sensitive electrical conductivity, the multifunctional hydrogels were inspired by various mussels on the base of catechol and its analogues. In this review, we review the strategies for improving the mechanical strength, adhesion, conductivity and antibacterial properties of mussel-inspired hydrogels as bioelectronics. Double network structures, nanocomposites, supramolecular block polymers and other strategies were utilized for achieving tough hydrogels to prevent tensile fractures under high deformation. Many mussel-inspired chemistries were incorporated for constructing skin-attachable hydrogel strain sensors and some strategies for controlling the oxidation of catechol were employed to achieve long-term adhesion. In addition, electrolytes, conductive fillers, conductive polymers and their relevant hydrophilic modifications were introduced for fabricating the conductive hydrogel bioelectronics to enhance the conductivity properties. Finally, the challenges and outlooks in this promising field are featured from the perspective of materials chemistry.
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