Electrospun Mn2O3 web electrodes: Influence of fabrication parameters on electrochemical performance

M. C. Brockway, J. Skinner
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引用次数: 1

Abstract

Supercapacitors are an important developing technology for renewable energy, hybrid and electric vehicles, and personal electronics. One material of interest for supercapacitor electrodes is Mn2O3, which is low cost, nontoxic, and easily fabricated. While traditional electrode fabrication involves mixing active materials with binders and conductive agents, electrospinning Mn2O3 fibers directly onto charge-collecting substrates simplifies processing and reduces overall mass. Herein, the effects of electrospinning solution composition, electrospinning duration, and calcination time on the electrochemical storage capacity of Mn2O3 web electrodes are studied. Electrode morphologies are examined, and the relationships between processing, morphology, and storage capacity are discussed. A numerical model fit to the data assesses a relative significance of the four fabrication parameters.
电纺丝Mn2O3网状电极:制备参数对电化学性能的影响
超级电容器是可再生能源、混合动力和电动汽车以及个人电子产品的重要发展技术。超级电容器电极的一种感兴趣的材料是Mn2O3,它成本低,无毒,易于制造。传统的电极制造涉及将活性材料与粘合剂和导电剂混合,而静电纺丝Mn2O3纤维直接在电荷收集基板上简化了加工过程并降低了总质量。研究了静电纺丝溶液组成、静电纺丝时间和煅烧时间对Mn2O3网状电极电化学存储容量的影响。电极形态进行了检查,并讨论了加工,形态和存储容量之间的关系。数值模型拟合的数据评估了四个制造参数的相对重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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