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Freeform fabrication and characterization of Zn-air batteries

机译:锌空气电池的自由形式制造和表征

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Purpose - The paper's aim is to show the development of materials and methods which allow freeform fabrication of macroscopic Zn-air electrochemical batteries. Freedom of geometric design may allow for new possibilities in performance optimization. Design/methodology/approach - The authors have formulated battery materials which are compatible with solid freeform fabrication (SFF) while retaining electrochemical functionality. Using SFF processes, they have fabricated six Zn-air cylindrical batteries and quantitatively characterized them and comparable commercial batteries. They analyze their performance in light of models from the literature and they also present SFF of a flexible two-cell battery of unusual geometry. Findings - Under continuous discharge to 0.25 V/cell with a 100Ω load, the cylindrical cells have a specific energy and power density in the range of 40-70 J/g and 0.4-1 mW/cm{sup}2, respectively, with a mass range of 8-18 g. The commercial Zn-air button cells tested produce 30-750 J/g and 7-9 mW/cm{sup}2 under the same conditions, and have a mass range of 0.2-2 g. The two-cell, flexible Zn-air battery produces a nominal 2.8 V, open-circuit. Research limitations/implications - The freeform-fabricated batteries have ~10 percent of the normalized performance of the commercial batteries. High-internal contact resistance, loss of electrolyte through evaporation, and inferior catalyst reagent quality are possible causes of inferior performance. Complicated material preparation and battery fabrication processes have limited the number of batteries fabricated and characterized, limiting the statistical significance of the results. Practical implications - Performance enhancement will be necessary before the packaging efficiency and design freedom provided by freeform-fabricated batteries will be of practical value. Originality/value - The paper demonstrates a multi-material SFF system, material formulations, and fabrication methods which together allow the fabrication of complete functional Zn-air batteries. It provides the first quantitative characterization of completely freeform-fabricated Zn-air batteries and comparison to objective standards, and shows that highly unusual, functional battery designs incorporating flexibility, multiple cells, and unusual geometry may be freeform fabricated.
机译:目的-本文的目的是展示可以自由制造宏观Zn-air电化学电池的材料和方法的发展。自由的几何设计可以为性能优化提供新的可能性。设计/方法/方法-作者配制了与固态自由形式制造(SFF)兼容的电池材料,同时保留了电化学功能。他们使用SFF工艺制造了六个Zn-air圆柱形电池,并对它们和可比较的商用电池进行了定量表征。他们根据文献中的模型分析了其性能,并提出了具有异常几何形状的柔性两节电池的SFF。发现-在100Ω负载下连续放电至0.25 V / cell的情况下,圆柱形电池的比能量和功率密度分别在40-70 J / g和0.4-1 mW / cm {sup} 2的范围内,质量范围为8-18克。在相同条件下,测试的市售Zn-空气纽扣电池产生30-750 J / g和7-9 mW / cm {sup} 2,质量范围为0.2-2 g。两节柔性锌空气电池可产生标称值为2.8 V的开路。研究的局限性/含义-自由形状的电池约占商用电池正常性能的10%。较高的内部接触电阻,由于蒸发造成的电解质损失以及催化剂试剂质量不佳可能是性能不佳的原因。复杂的材料制备和电池制造过程限制了制造和表征的电池数量,从而限制了结果的统计意义。实际意义-在自由成型电池提供的包装效率和设计自由度具有实用价值之前,必须提高性能。原创性/价值-本文演示了一种多材料SFF系统,材料配方和制造方法,它们共同构成了完整的功能性Zn-空气电池。它提供了完全自由形式制造的Zn-air电池的首次定量表征,并与客观标准进行了比较,并且表明可以自由制造高度灵活,功能灵活的电池设计,包括柔性,多个电池和不寻常的几何形状。

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