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Hollow mesoporous Fe2O3 nanospindles/CNTs composite: an efficient catalyst for high-performance Li-O2 batteries

机译:空心介孔Fe2O3纳米锭/ CNTs复合材料:高性能Li-O2电池的有效催化剂

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The design of mesoporous or hollow transition metal oxide/carbon hybrid catalysts is very important for rechargeable Li-O2 batteries. Here, spindle-like Fe2O3 with hollow mesoporous structure on CNTs backbones (Fe2O3-HMNS@CNT) are prepared by a facile hydrolysis process combined with low temperature calcination. Within this hybrid structure, the hollow interior and mesoporous shell of the Fe2O3 nanospindles provide high specific surface area and abundant catalytical active sites, which is also beneficial to facilitating the electrolyte infiltration and oxygen diffusion. Furthermore, the crisscrossed CNTs form a three-dimensional (3D) conductive network to accelerate and stabilize the electron transport, which leads to the decreasing internal resistance of electrode. As a cathodic catalyst for Li-O2 batteries, the Fe2O3-HMNS@CNT composite exhibits high specific capacity and excellent cycling stability (more than 100 cycles).
机译:介孔或中空过渡金属氧化物/碳杂化催化剂的设计对于可再充电Li-O2电池非常重要。在此,通过简便的水解过程与低温煅烧相结合,制得了在碳纳米管骨架(Fe2O3-HMNS @ CNT)上具有中空介孔结构的纺锤状Fe2O3。在这种混合结构中,Fe2O3纳米锭的中空内部和介孔壳提供了高比表面积和丰富的催化活性位,这也有利于促进电解质的渗透和氧扩散。此外,纵横交错的CNT形成三维(3D)导电网络以加速和稳定电子传输,从而导致电极的内部电阻降低。作为Li-O2电池的阴极催化剂,Fe2O3-HMNS @ CNT复合材料具有高比容量和出色的循环稳定性(超过100个循环)。

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