生物电子学
纳米技术
聚氨酯
材料科学
可持续设计
生化工程
化学
持续性
生物传感器
有机化学
工程类
生态学
生物
作者
Tao Yue,Yuhua Xue,Fu‐Cheng Wang,Liangjie Shan,Zhipeng Ni,Yi-Chen Lan,Pei Zhang,Yafei Wang,Ji Liu
出处
期刊:Small
[Wiley]
日期:2024-10-17
标识
DOI:10.1002/smll.202408557
摘要
Abstract Flexible bioelectronic devices seamlessly interface with organs and tissues, offering unprecedented opportunity for timely prevention, early diagnosis, and medical therapies. However, the majority of flexible substrates utilized in bioelectronics still encounter significant challenges in terms of recyclability and reprocessing, leading to the accumulation of environmentally and biologically hazardous toxic waste. Here, the study reports the design of recyclable polyurethane (PU) vitrimers engineered with internal boron‐nitrogen coordination bonds that can reversibly dissociate to boronic acids and hydroxyl, or undergo metathesis reaction following an associative pathway. The study demonstrates the capacity of these recyclable PU vitrimers as flexible substrates in various wearable and implantable bioelectronic applications, achieving high‐quality electrophysiological recordings and stimulation. Furthermore, the study establishes a sustainable recycling process by reconstructing a range of bioelectronic devices from the recycled PU vitrimers without compromising the mechanical performance. This closed‐loop approach not only addresses the critical challenge of the reclaiming medical electronic waste but also paves the way for the development of sustainable flexible bioelectronics for healthcare applications.
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