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基于海藻酸钠/聚吡咯纳米纤维的可拉伸自修复导电水凝胶的简便制备及其在柔性超级电容器和应变传感器中的应用。

Facile preparation of stretchable and self-healable conductive hydrogels based on sodium alginate/polypyrrole nanofibers for use in flexible supercapacitor and strain sensors.

机构信息

Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China; College of Chemical Engineering, Jiangsu Key Lab for the Chemistry & Utilization of Agricultural and Forest Biomass, Nanjing Forestry University, Nanjing 210037, China.

Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China; College of Chemical Engineering, Jiangsu Key Lab for the Chemistry & Utilization of Agricultural and Forest Biomass, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Int J Biol Macromol. 2021 Mar 1;172:41-54. doi: 10.1016/j.ijbiomac.2021.01.017. Epub 2021 Jan 11.

Abstract

A series of multifunctional conductive hydrogels (denoted as SA-B-DAPPy) is developed by combining sodium alginate (SA) and dopamine functionalized polypyrrole (DAPPy) nanofibers with borax as a cross-linking agent. By modulation of the DAPPy weight ratio to 3.5 wt%, the conductivity of the hydrogel can reach a high value of 1.33 ± 0.012 S/m. Both borate interactions and hydrogen bonds within hydrogel frameworks can account for the satisfactory stretchability (more than 800%) and instantaneous self-healing ability. More significantly, the SA-B-DAPPy hydorgels can be easily fabricated as electrode component in the symmetric supercapacitor with SA-B-DAPPy//SA-B//SA-B-DAPPy configuration. Due to the self-healing of the electrode/electrolyte interface, the obtained all-in-one device can deliver superior areal specific capacitance of 587 mF/cm at current density of 1.0 mA/cm, high energy density of 52.18 μWh/cm at power density of 800 μW/cm, good capacitance retention of 80% after 2000 cycles, as well as integration characteristics. Furthermore, on account of high conductivity, a thin SA-B-DAPPy hydrogel film can be fabricated into the motion sensor to detect and distinguish various human movements. The sensor exhibits high gauge factor (GF) up to 10.23, and stable, repeatable response signals, which permit supersensitive for monitoring large-scale joints motions and subtle muscle movements.

摘要

一系列多功能导电水凝胶(表示为 SA-B-DAPPy)是通过将海藻酸钠(SA)和多巴胺功能化的聚吡咯(DAPPy)纳米纤维与硼砂作为交联剂结合而开发的。通过调节 DAPPy 的重量比为 3.5wt%,水凝胶的电导率可达到 1.33±0.012S/m 的高值。水凝胶框架内的硼酸盐相互作用和氢键都可以解释其令人满意的拉伸性(超过 800%)和瞬时自修复能力。更重要的是,SA-B-DAPPy 水凝胶可以很容易地作为电极组件在对称超级电容器中制造,其结构为 SA-B-DAPPy//SA-B//SA-B-DAPPy。由于电极/电解质界面的自修复,所获得的一体式器件在电流密度为 1.0mA/cm 时可提供 587 mF/cm 的出色比面积电容,在功率密度为 800μW/cm 时可提供 52.18μWh/cm 的高能量密度,在 2000 次循环后具有 80%的电容保持率以及集成特性。此外,由于高导电性,可以将薄的 SA-B-DAPPy 水凝胶膜制成运动传感器,以检测和区分各种人体运动。该传感器表现出高达 10.23 的高应变系数(GF),以及稳定、可重复的响应信号,使其能够超灵敏地监测大规模关节运动和微妙的肌肉运动。

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