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Controlling the Structures Flexibility Conductivity Stability of Three-Dimensional Conductive Networks of Silver Nanoparticles/Carbon-Based Nanomaterials with Nanodispersion and their Application in Wearable Electronic Sensors

机译:具有纳米分散性的银纳米颗粒/碳纳米材料三维导电网络的结构柔性导电稳定性的控制及其在可穿戴电子传感器中的应用

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摘要

This research has successfully synthesized highly flexible and conductive nanohybrid electrode films. Nanodispersion and stabilization of silver nanoparticles (AgNPs) were achieved via non-covalent adsorption and with an organic polymeric dispersant and inorganic carbon-based nanomaterials—nano-carbon black (CB), carbon nanotubes (CNT), and graphene oxide (GO). The new polymeric dispersant—polyisobutylene- -poly(oxyethylene)- -polyisobutylene (PIB-POE-PIB) triblock copolymer—could stabilize AgNPs. Simultaneously, this stabilization was conducted through the addition of mixed organic/inorganic dispersants based on zero- (0D), one- (1D), and two-dimensional (2D) nanomaterials, namely CB, CNT, and GO. Furthermore, the dispersion solution was evenly coated/mixed onto polymeric substrates, and the products were heated. As a result, highly conductive thin-film materials (with a surface electrical resistance of approximately 10 Ω/sq) were eventually acquired. The results indicated that 2D carbon-based nanomaterials (GO) could stabilize AgNPs more effectively during their reductNion and, hence, generate particles with the smallest sizes, as the COO functional groups of GO are evenly distributed. The optimal AgNPs/PIB-POE-PIB/GO ratio was 20:20:1. Furthermore, the flexible electrode layers were successfully manufactured and applied in wearable electronic sensors to generate electrocardiograms (ECGs). ECGs were, thereafter, successfully obtained.
机译:该研究成功地合成了高柔性和导电性的纳米混合电极膜。银纳米颗粒(AgNPs)的纳米分散和稳定化是通过非共价吸附以及有机聚合物分散剂和无机碳基纳米材料-纳米碳黑(CB),碳纳米管(CNT)和氧化石墨烯(GO)来实现的。新型聚合物分散剂-聚异丁烯--聚(氧乙烯)--聚异丁烯(PIB-POE-PIB)三嵌段共聚物可稳定AgNP。同时,通过添加基于零(0D),一(1D)和二维(2D)纳米材料(即CB,CNT和GO)的有机/无机混合分散剂来实现这种稳定化。此外,将分散液均匀地涂布/混合到聚合物基材上,并将产物加热。结果,最终获得了高导电性的薄膜材料(表面电阻约为10Ω/ sq)。结果表明,二维碳基纳米材料(GO)可以在还原过程中更有效地稳定AgNPs,并因此产生最小尺寸的颗粒,因为GO的COO官能团分布均匀。最佳的AgNPs / PIB-POE-PIB / GO比为20:20:1。此外,柔性电极层已成功制造并应用于可穿戴电子传感器中,以生成心电图(ECG)。此后,成功获得了心电图。

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