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首页> 外文期刊>Journal of power sources >Optimal cobalt oxide (CO_3O_4): Graphene (GR) ratio in Co_3O_4/GR as air cathode catalyst for air-breathing hybrid electrolyte lithium-air battery
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Optimal cobalt oxide (CO_3O_4): Graphene (GR) ratio in Co_3O_4/GR as air cathode catalyst for air-breathing hybrid electrolyte lithium-air battery

机译:最佳钴氧化物(CO_3O_4):CO_3O_4 / GR中的石墨烯(GR)比为空气阴极催化剂,用于空气呼吸混合电解质锂空气电池

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This study assembles lithium-air batteries with aqueous/aprotic hybrid electrolytes designed for ambient air-breathing in a high relative humidity environment. Cobalt oxide/graphene (Co3O4/GR) nanocomposites are synthesized for improved oxygen reduction and oxygen evolution reaction functionalities. The Co3O4/GR composites with Co3O4 loads of 33.7 wt%, 48.2 wt%, and 62.5 wt% are prepared using hydrothermal synthesis. The Co3O4/GR composites' catalytic activities on oxygen reduction reaction and oxygen evolution reaction is shown to reduce the polarization of pristine carbon cloth electrode by 40% and serve as a good cathode catalyst. Lithium/air batteries are assembled with a lithium metal/organic electrolyte/ceramic lithium-ion conductive membrane/aqueous electrolyte/air cathode configuration. These batteries with the developed catalysts demonstrate good long-term stability over 120 h when fed with high (70-100%) relative humidity ambient air. More importantly, the results indicate the Co3O4/GR composite in 48.2:51.8 (w/w) is the optimal load for the hybrid electrolyte lithium-air battery due to its balanced amount of catalytic Co3O4 and charge-transfer mediated graphene, and good dispersibility of the nanocatalyst on the planar graphene surface.
机译:本研究组装了锂 - 空气电池,其具有用于高相对湿度环境的环境空气呼吸的水/非质子混合电解质。合成氧化钴/石墨烯(CO3O4 / GR)纳米复合材料以改善氧还原和氧气进化反应官能团。使用水热合成制备具有CO3O4 / GR复合材料33.7wt%,48.2重量%和62.5wt%的CO 3 O 4 / GR复合材料。显示CO 3 O4 / GR复合材料的氧还原反应和氧逸出反应的催化活性,以将原始碳布电极的偏振减少40%,并用作良好的阴极催化剂。锂/空气电池配合锂金属/有机电解质/陶瓷锂离子导电膜/水性电解质/空气阴极构型。当用高(70-100%)相对湿度环境空气喂食时,具有发达催化剂的这些电池在120小时内表现出良好的长期稳定性。更重要的是,结果表明,48.2:51.8(w / w)中的CO 3 O4 / GR复合材料是混合电解质锂 - 空气电池的最佳负载,其由于其平衡的催化CO3O4和电荷转移介导的石墨烯,以及良好的分散性平面石墨烯表面上的纳米催化剂。

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