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用于可拉伸电极应用的对齐的波浪状弹性体纤维与坚固的导电层的化学镀沉积。

Aligned wave-like elastomer fibers with robust conductive layers electroless deposition for stretchable electrode applications.

机构信息

College of Polymer Science and Engineering, Sichuan University, State Key Laboratory of Polymer Materials Engineering, Chengdu, 610065, Sichuan, People's Republic of China.

出版信息

J Mater Chem B. 2021 Nov 3;9(42):8801-8808. doi: 10.1039/d1tb01441b.

Abstract

Flexible wearable electronics play an important role in the healthcare industry due to their unique skin affinity, portability and breathability. Despite great progress, it still remains a big challenge to facilely fabricate stretchable electrodes with low resistance, excellent stability and a wide tensile range. Here, we propose a handy and time-saving strategy for the fabrication of elastomeric films consisting of wave-like fibers with a robust conductive layer of silver nanoparticles (AgNPs) immobilized using polydopamine (PDA) and silicone rubber (SR). To realize better stretchability, electrospun thermoplastic polyurethane (TPU) mats with oriented nanofibers were treated ethanol to achieve a wavy structure, which also allowed for the decoration of AgNP precursors on the TPU surface PDA assisted electroless deposition (ELD). Therefore, the electrodes achieved a stretchability of 120% with high electrical conductivity (486 S cm). The films with a reduction time of 30 min showed superior electrical conductivity indicated by a resistance increase of only 100% within 50% strain. The TPU/PDA/AgNP/SR composites with a shorter reduction time of silver precursors could monitor human motions as wearable strain sensors with a wide work strain range (0-98%) and a high sensitivity (with a gauge factor (GF) of up to 81.76) for a strain of 80-98%. Therefore, they are an excellent candidate for potential application in prospective stretchable electronics.

摘要

可拉伸的电子产品在医疗保健行业中起着重要的作用,因为它们具有独特的皮肤亲和力、便携性和透气性。尽管已经取得了很大的进展,但仍然很难制造具有低电阻、优异稳定性和宽拉伸范围的可拉伸电极。在这里,我们提出了一种简便、省时的策略,用于制造由波浪形纤维组成的弹性薄膜,这些纤维具有牢固的导电层,由银纳米粒子(AgNPs)固定,使用聚多巴胺(PDA)和硅橡胶(SR)。为了实现更好的拉伸性,用乙醇处理定向纳米纤维的静电纺热塑性聚氨酯(TPU)垫,以实现波浪结构,这也允许在 TPU 表面上装饰 AgNP 前体 通过 PDA 辅助无电沉积(ELD)。因此,电极的拉伸性达到了 120%,电导率高达 486 S cm。具有 30 分钟还原时间的薄膜具有较高的导电性,在 50%应变下电阻仅增加 100%。具有较短还原时间的 TPU/PDA/AgNP/SR 复合材料可以作为可穿戴应变传感器监测人体运动,具有宽工作应变范围(0-98%)和高灵敏度(应变 80-98%时的灵敏度系数(GF)高达 81.76)。因此,它们是潜在可拉伸电子产品的优秀候选材料。

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