Nanostructured conductive polymeric modified exfoliated graphite paper based flexible battery for wearable electronics

I. Pandey, Jai Deo Tiwari
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Abstract

Worldwide electronic waste is one of the emerging problems which can adversely affect the human and environment. The paper based flexible eco-friendly, disposable electronics battery is the excellent way to come up with the above mentioned challenge. In this work we reported the development and optimization of a cost, disposable, biodegradable, miniaturized and lightweight conductive polymer coated exfoliated graphite paper battery. Here, anode contains aluminium foil and cathode is made using electrochemically deposited anthraquinone conductive polymers on exfoliated graphite paper with a concentrated sodium chloride salt, as electrolyte. The battery shows a electrochemical response on by applying 40–50 μL of water and produces a maximum capacity of 235 mAh g−1 along with a superior cyclability of up to 500 cycles at 200.0 mA cm−2 current density. The proposed 3–4 battery connected in series powers a LED during approximately 60–90 seconds. Still continuous effort is going on for battery performance improvement. Obtained results allow to planning potential uses to low power consumptions microelectronics such as pacemakers, cosmetics, wearable biomedical devices, and electronics.
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可穿戴电子器件用纳米结构导电聚合物改性剥离石墨纸柔性电池
在世界范围内,电子垃圾是对人类和环境产生不利影响的新问题之一。基于纸张的柔性环保一次性电子电池是应对上述挑战的绝佳途径。在这项工作中,我们报道了一种低成本、一次性、可生物降解、小型化和轻量化的导电聚合物涂层剥离石墨纸电池的开发和优化。在这里,阳极是铝箔,阴极是用电化学沉积的蒽醌导电聚合物在剥离的石墨纸上,用浓氯化钠盐作为电解质制成的。在200.0 mA cm−2电流密度下,电池的最大容量为235 mAh g−1,循环次数可达500次。提议的3-4块电池串联在一起,在大约60-90秒内为LED供电。电池性能的改进仍在不断努力。获得的结果允许规划低功耗微电子的潜在用途,如起搏器,化妆品,可穿戴生物医学设备和电子产品。
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