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Parametric study and optimization of a low-cost paper-based Al-air battery with corrosion inhibition ability

机译:具有腐蚀抑制能力的低成本纸铝电池的参数研究和优化

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摘要

Conventional Al-air battery is not suitable for mini-watt applications due to bulky liquid storage and complex water management. To achieve successful simplification and miniaturization, an innovative paper-based Al-air battery is developed in this study, which employs cellulose paper as electrolyte substrate, low-grade Al foil as anode and carbon paper as cathode. Despite its simple structure and low cost, this battery achieves satisfactory power output together with high efficiency. With alkaline electrolyte, an open-circuit voltage of 1.6 V, a peak power density of 21 mW cm(-2) and a specific capacity of 1273 mA h g(-1) are obtained. With saline electrolyte, the battery can continuously work at 1 mA cm(-2) for 5.6 h with only 3.5 mg Al. In addition, it is found that the paperbased electrolyte delivery can suppress Al corrosion in alkaline environment, enabling the direct utilization of low-grade Al resources. Moreover, the battery performance is improved by optimizing properties of its components, such as cathode catalyst, electrode area ratio and paper substrate thickness. Finally, a 5-cell battery pack is successfully developed, achieving an open-circuit voltage of 7.7 V and a stacking efficiency as high as 97%. By further scaling-up, this battery pack is successfully demonstrated for charging portable electronics.
机译:由于庞大的液体储存和复杂的水管理,传统的Al-Abile电池不适用于迷你瓦应用。为了实现成功的简化和小型化,本研究开发了一种创新的纸质铝基电池,其使用纤维素纸作为电解质基板,低级Al箔作为阳极和阴极作为阴极。尽管结构简单且成本低,但该电池以高效率实现了令人满意的功率输出。利用碱性电解质,获得1.6V的开口电压,峰值功率密度为21mW cm(-2)和1273mA H g(-1)的特定容量。用盐水电解质,电池可以在1 mAcm(-2)中连续工作5.6小时,只有3.5mg。此外,发现纸张化电解质递送可以抑制碱性环境中的铝腐蚀,从而实现低级AL资源的直接利用。此外,通过优化其部件的性能,例如阴极催化剂,电极面积比和纸衬底厚度,改善了电池性能。最后,成功开发了一个5细胞电池组,实现了7.7V的开路电压,堆叠效率高达97%。通过进一步缩放,该电池组成功地证明了用于充电便携式电子设备。

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