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One-step synthesis of graphene/polypyrrole nanofiber composites as cathode material for a biocompatible zinc/polymer battery

机译:一步合成石墨烯/聚吡咯纳米纤维复合材料作为生物相容性锌/聚合物电池的阴极材料

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摘要

The significance of developing implantable, biocompatible, miniature power sources operated in a low current range has become manifest in recent years to meet the demands of the fast-growing market for biomedical microdevices. In this work, we focus on developing high-performance cathode material for biocompatible zinc/polymer batteries utilizing biofluids as electrolyte. Conductive polymers and graphene are generally considered to be biocompatible and suitable for bioengineering applications. To harness the high electrical conductivity of graphene and the redox capability of polypyrrole (PPy), a polypyrrole fiber/graphene composite has been synthesized via a simple one-step route. This composite is highly conductive (141 S cm-1) and has a large specific surface area (561 m2 g-1). It performs more effectively as the cathode material than pure polypyrrole fibers. The battery constructed with PPy fiber/reduced graphene oxide cathode and Zn anode delivered an energy density of 264 mWh g-1 in 0.1 M phosphate-buffer saline.
机译:近年来,为了满足快速增长的生物医学微器件市场的需求,开发在低电流范围内工作的可植入,生物相容性微型电源的重要性已变得显而易见。在这项工作中,我们专注于开发利用生物流体作为电解质的生物相容性锌/聚合物电池的高性能阴极材料。导电聚合物和石墨烯通常被认为具有生物相容性,并适合生物工程应用。为了利用石墨烯的高电导率和聚吡咯(PPy)的氧化还原能力,已经通过简单的一步法合成了聚吡咯纤维/石墨烯复合材料。该复合材料具有高导电性(141 S cm-1),并且具有较大的比表面积(561 m2 g-1)。它比纯聚吡咯纤维更有效地用作阴极材料。由PPy纤维/氧化石墨烯还原阴极和Zn阳极构成的电池在0.1 M磷酸盐缓冲盐水中的能量密度为264 mWh g-1。

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