Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education), Shandong University, 17923 Jingshi Road, Jinan 250061, China.
Nanoscale. 2018 Dec 20;11(1):50-59. doi: 10.1039/c8nr08457b.
Urchin-like NiO-NiCo2O4 microspheres with heterostructures were successfully synthesized through a facile hydrothermal method, followed by thermal treatment. The unique structure of NiO-NiCo2O4 with the synergetic effect between NiCo2O4 and NiO, and the heterostructure favour the catalytic activity towards Li-O2 batteries. NiCo2O4 is helpful for boosting both the oxygen reduction reaction and oxygen evolution reaction for the Li-O2 batteries and NiO is likely to promote the decomposition of certain by-products. The special urchin-like morphology facilitates the continuous oxygen flow and accommodates Li2O2. Moreover, benefitting from the heterostructure, NiO-NiCo2O4 microspheres are able to promote the transport of Li ions and electrons to further improve battery performance. Li-O2 batteries utilizing a NiO-NiCo2O4 microsphere electrode show a much higher specific capacity and a lower overpotential than those with a Super P electrode. Moreover, they exhibit an enhanced cycling stability. The electrode can be continuously discharged and charged without obvious terminal voltage variation for 80 cycles, as the discharge capacity is restricted at 600 mA h g-1, suggesting that NiO-NiCo2O4 is a promising catalyst for Li-O2 batteries.
通过简便的水热法和随后的热处理,成功合成了具有异质结构的海胆状 NiO-NiCo2O4 微球。NiO-NiCo2O4 的独特结构具有 NiCo2O4 和 NiO 之间的协同效应以及异质结构,有利于提高 Li-O2 电池的催化活性。NiCo2O4 有助于提高 Li-O2 电池的氧还原反应和氧析出反应的催化活性,而 NiO 则可能促进某些副产物的分解。特殊的海胆状形态有利于连续的氧气流动和容纳 Li2O2。此外,得益于异质结构,NiO-NiCo2O4 微球能够促进 Li 离子和电子的传输,从而进一步提高电池性能。使用 NiO-NiCo2O4 微球电极的 Li-O2 电池比使用 Super P 电极的 Li-O2 电池具有更高的比容量和更低的过电势,并且循环稳定性也得到了增强。该电极可以在 80 次循环中连续放电和充电,而没有明显的端电压变化,因为放电容量限制在 600 mA h g-1,这表明 NiO-NiCo2O4 是一种很有前途的 Li-O2 电池催化剂。