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首页> 外文期刊>Catalysis science & technology >Reduced Co3O4 nanowires with abundant oxygen vacancies as an efficient free-standing cathode for Li-O-2 batteries
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Reduced Co3O4 nanowires with abundant oxygen vacancies as an efficient free-standing cathode for Li-O-2 batteries

机译:减少Co3O4纳米线与丰富的氧气空缺职位作为一个有效的独立的阴极Li-O-2电池

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摘要

The growth mechanism and reversible formation/decomposition of the discharge products in Li-O-2 batteries, which play a vital role in the performance of these batteries, are greatly affected by the construction of the cathode. In this work, a free-standing cathode with reduced Co3O4 nanowires (r-Co3O4@Ni) is prepared by a facile hydrothermal calcination process followed by reduction with aqueous NaBH4. The cathode not only displays a high discharge capacity of 4448 mAh g(-1) but also performs stably for 162 cycles, which is nearly three times the number of cycles of an Li-O-2 battery with pristine Co3O4@Ni and even better than that with a RuO2-modified electrode (RuO2/Co3O4@Ni). The Li2O2 growth models of the three types of Co3O4 electrodes at different discharge stages are studied in detail to understand the catalytic processes occurring on the surface of the electrodes. As a conclusion, the superior properties of r-Co3O4@Ni are due to the enhanced surface growth of the discharge products, which is promoted by the abundant oxygen vacancies and conformally distributed active sites generated during NaBH4 treatment.
机译:生长机理和可逆的放电的形成/分解产品Li-O-2电池中起到至关重要的作用这些电池的性能,是极大的影响阴极的建设。这项工作,一个独立的阴极与减少Co3O4纳米线(r-Co3O4@Ni)准备的温和的水热焙烧过程通过减少水NaBH4。只显示一个高的放电容量4448mAh g(1)但还执行162年的稳定周期,这是近三倍的数量的周期与原始Li-O-2电池Co3O4@Ni甚至比这更好RuO2-modified电极(RuO2 / Co3O4@Ni)。Li2O2 Co3O4三种类型的增长模型电极在不同放电阶段详细了解催化研究发生表面的过程电极。r-Co3O4@Ni将增强的属性表面放电的增长产品由丰富的氧空位和提升吗形分布式有源网站生成的在NaBH4治疗。

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