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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >CNT@Ni@Ni-Co silicate core-shell nanocomposite: a synergistic triple-coaxial catalyst for enhancing catalytic activity and controlling side products for Li-O-2 batteries
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CNT@Ni@Ni-Co silicate core-shell nanocomposite: a synergistic triple-coaxial catalyst for enhancing catalytic activity and controlling side products for Li-O-2 batteries

机译:CNT @ Ni-Co硅酸盐核 - 壳纳米复合材料:一种协同三相同轴催化剂,用于增强Li-O-2电池的催化活性和控制侧产品

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摘要

A great challenge in the application of carbon-based materials to Li-O-2 batteries is to prevent the formation of carbonate-based side products, thereby extending the cycle life of Li-O-2 batteries. Herein, for the first time, CNT@Ni@NiCo silicate core-shell nanocomposite is designed and used as a cathode catalyst in Li-O-2 batteries. This nanocomposite shows a promising electrochemical performance with a discharge capacity of 10 046 mA h g(cat)(-1) and a low overpotential of 1.44 V at a current density of 200 mA g(cat)(-1), and it can sustain for more than 50 cycles within the voltage range of 2-4.7 V. X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD) characterizations prove that the formation of Li2CO3 and other side products are prevented, likely due to the encapsulation of CNTs by NiCo silicates and Ni nanoparticles, which may help decompose the side products. Finally, the synergistic effects, which are contributed by the high electrical conductivity of CNTs, high surface area, the high oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) activities of NiCo silicate, and the simple decomposition of side products by Ni nanoparticles enable outstanding performance of the CNT@Ni@NiCo silicate core-shell nanocomposite as a cathode catalyst for Li-O-2 batteries.
机译:在碳基材料应用于Li-O-2电池的巨大挑战是防止碳酸酯类侧产品的形成,从而延长Li-O-2电池的循环寿命。在此,首次CNT @ Ni-NiCO硅酸盐核 - 壳纳米复合材料设计并用作Li-O-2电池中的阴极催化剂。该纳米复合材料显示出有希望的电化学性能,放电容量为10 046 mA Hg(猫)( - 1),并且在电流密度为200 mA g(猫)( - 1),并且它可以维持在2-4.7V的电压范围内超过50个循环。X射线光电子能谱(XPS)和X射线衍射(XRD)表征证明,防止了Li2CO3和其他侧产品的形成,可能由于封装而导致Nico硅酸盐和Ni纳米颗粒的CNT,其可以有助于分解侧产品。最后,通过CNT的高电导率,高表面积,高氧还原反应(ORR)和氧气进化反应(OER)活性的效果效果是尼科硅酸盐的高导电性,以及NI的简单分解纳米粒子使得CNT @ NiCO硅酸盐核 - 壳纳米复合物作为Li-O-2电池的阴极催化剂的优异性能。

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