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Biologically derived melanin electrodes in aqueous sodium-ion energy storage devices

机译:钠离子水储能装置中生物衍生的黑色素电极

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摘要

Biodegradable electronics represents an attractive and emerging paradigm in medical devices by harnessing simultaneous advantages afforded by electronically active systems and obviating issues with chronic implants. Integrating practical energy sources that are compatible with the envisioned operation of transient devices is an unmet challenge for biodegradable electronics. Although high-performance energy storage systems offer a feasible solution, toxic materials and electrolytes present regulatory hurdles for use in temporary medical devices. Aqueous sodium-ion charge storage devices combined with biocompatible electrodes are ideal components to power next-generation biodegradable electronics. Here, we report the use of biologically derived organic electrodes composed of melanin pigments for use in energy storage devices. Melanins of natural (derived from Sepia officinalis) and synthetic origin are evaluated as anode materials in aqueous sodium-ion storage devices. Na+-loaded melanin anodes exhibit specific capacities of 30.4 ± 1.6 mAhg−1. Full cells composed of natural melanin anodes and λ-MnO2 cathodes exhibit an initial potential of 1.03 ± 0.06 V with a maximum specific capacity of 16.1 ± 0.8 mAhg−1. Natural melanin anodes exhibit higher specific capacities compared with synthetic melanins due to a combination of beneficial chemical, electrical, and physical properties exhibited by the former. Taken together, these results suggest that melanin pigments may serve as a naturally occurring biologically derived charge storage material to power certain types of medical devices.
机译:通过利用电子有源系统提供的同时优势并消除了慢性植入物的问题,可生物降解的电子器件代表了一种有吸引力的新兴医疗设备范例。集成与瞬态设备的预期操作兼容的实用能源,对于可生物降解的电子设备来说是一项尚未解决的挑战。尽管高性能的能量存储系统提供了可行的解决方案,但有毒材料和电解质仍然存在用于临时医疗设备的监管障碍。钠离子水电荷存储设备与生物相容性电极相结合,是为下一代可生物降解电子设备供电的理想组件。在这里,我们报告了由黑色素颜料组成的生物衍生有机电极在储能设备中的使用。天然(源自棕褐色)和合成素的黑色素在水性钠离子存储设备中被评估为阳极材料。 Na + 负载的黑色素阳极的比容量为30.4±1.6 mAhg -1 。由天然黑色素阳极和λ-MnO2阴极组成的全电池的初始电势为1.03±0.06 V,最大比容量为16.1±0.8 mAhg -1 。天然黑色素阳极比合成黑色素具有更高的比容量,这是由于前者表现出的有益的化学,电和物理性能的组合。综上所述,这些结果表明黑色素颜料可以用作天然存在的生物衍生电荷存储材料,以为某些类型的医疗设备提供动力。

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