CeO_2@NiCo_2O_4 nanowire arrays on carbon textiles as high performance cathode for Li-O_2 batteries

来源 :Science China(Chemistry) | 被引量 : 0次 | 上传用户:woaixuyong
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The successful development of Li-O_2 battery technology depends on developing a stable and efficient cathode. As an important step toward this goal, for the first time, we report the development of CeO_2 nanoparticles modified NiCo_2O_4 nanowire arrays(NWAs) grown on the carbon textiles as a new carbon-free and binder-free cathode system. In this study, the Li-O_2 battery with the CeO_2@NiCo_2O_4 NWAs has exhibited much reduced overpotentials, a high discharge capacity, an improved cycling stability,outperforming the Li-O_2 battery with NiCo_2O_4 NWAs. These improvements can be attributed to both the tailored morphology of discharge product and improved oxygen reduction reaction(ORR) and oxygen evolution reaction(OER) activity after CeO_2 NPs deposition. To a considerable extent, this idea of cathode construction including structure design and composition optimization can provide guidance for further researches in developing more powerful cathode for Li-O_2 battery. The successful development of Li-O_2 battery technology depends on developing a stable and efficient cathode. As an important step toward this goal, for the first time, we report the development of CeO_2 nanoparticles modified NiCo_2O_4 nanowire arrays (NWAs) grown on the carbon textiles as this new, carbon-free and binder-free cathode system. In this study, the Li-O 2 battery with the CeO_2 @ NiCo_2O_4 NWAs has much reduced overpotentials, a high discharge capacity, an improved cycling stability, outperforming the Li-O_2 battery with improvements in oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) activity after CeO_2 NPs deposition. To a considerable extent, this idea of ​​cathode construction including structure design and composition optimization can provide guidance for further researches in developing more powerful cathode for Li-O_2 battery.
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