首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhanced sensing performance of carboxyl graphene-ionic liquid attached ionic polymer-metal nanocomposite based polymer strain sensors
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Enhanced sensing performance of carboxyl graphene-ionic liquid attached ionic polymer-metal nanocomposite based polymer strain sensors

机译:增强羧基石墨烯 - 离子液体附着的离子聚合物 - 金属纳米复合材料基于聚合物菌株传感器的感测性能

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Soft bendable polymer sensors have been widely used to monitor prosthetics, heartbeat, joint pain, and several other medical conditions because of their flexible nature. Recently, sensors based on piezoelectric inorganic materials, conducting polymers, and commercial Nafion based ionic polymer-metal nanocomposites (IPMNCs), have been extensively studied for sensor applications; however, existing inorganic and polymer materials exhibit low sensing currents due to weak interfacial bonding between the electrode and sensing material. Here, we show that biocompatible IPMNC sensors based on a carboxyl graphene (COG)-acidic ionic liquid (IL) (1-butyl-3-methylimidazolium-hydrogen sulfate)-poly(vinylidene fluoride-trifluoroethylene-chlorotrifluoroethylene) [P(VDF-TrFE-CTFE)]-polyvinylpyrrolidone (PVP)-polystyrene sulfonic acid (PSSA) ionic blend membrane can generate a high sensing current (6 mA cm(-2)) with a bending strain of 0.009. The ionic exchange capacity (IEC) (1.36 times), proton conductivity (3.4 times), and Young's modulus (176 times) of P(VDF-TrFE-CTFE)/PVP/PSSA/COG ionic blend membranes are enhanced compared to those of P(VDF-TrFE-CTFE)/PVP/PSSA. In comparison to a commercial Nafion membrane, enhanced values of water uptake (WUP) (5.61 times), IEC (3.26 times), and Young's modulus (6 times) were achieved by our P(VDF-TrFE-CTFE)/PVP/PSSA/COG/IL ionic blend membrane. Polymer sensors based on (PVDF-TrFE-CTFE)/PVP/PSSA/COG/IL IPMNC exhibit stable sensing currents in dry conditions for up to 6000 cycles. Our proposed blend fabricated through attaching COG and IL will find applications in several other devices such as supercapacitors due to its high capacitance (3.92 mF).
机译:由于其灵活性,软可弯曲的聚合物传感器已被广泛用于监测假肢,心跳,关节疼痛和其他几种医疗条件。最近,基于压电无机材料,导电聚合物和商业Nafion基离子聚合物 - 金属纳米复合材料(IPMNC)的传感器已被广泛研究传感器应用;然而,由于电极和感测材料之间的弱界面键合,现有的无机和聚合物材料具有低传感电流。在这里,我们表明,基于羧基石墨烯(COG) - 酸性离子液体(IL)(1-丁基-3-甲基咪唑硫酸氢硫酸铵) - 聚(偏二氟乙烯 - 三氟乙基 - 氯丁二氟乙烯)[P(VDF- TRFE-CTFE)] - 聚乙烯吡咯烷酮(PVP) - 聚苯乙烯磺酸(PSSA)离子共混膜可以产生高感测电流(6 mA cm(-2)),弯曲应变为0.009。与那些相比,离子交换能力(136次),质子电导率(3.4次)和杨氏模量(3.4次)和杨氏模量(3.4次)和杨氏模量(176次)增强了P(VDF-TRFE-CTFE)/ PVP / PSSA。与商业氮膜相比,通过我们的P(VDF-TRFE-CTFE)/ PVP / PSSA实现了增强的水摄取(3.26次),IEC(3.26次)和杨氏模量(6次) / COG / IL离子共混膜。基于(PVDF-TRFE-CTFE)/ PVP / PSSA / COG / IL IPMNC的聚合物传感器在干燥条件下表现出稳定的感测电流,可达6000个循环。我们通过附着COG和IL制造的建议混合物将在几种其他设备(例如超级电容器)中的应用,例如其高电容(3.92mF)。

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