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Dual-template ordered mesoporous carbon/Fe2O3 nanowires as lithium-ion battery anodes

机译:Dual-template有序介孔碳/ Fe2O3纳米线作为锂离子电池阳极

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摘要

Ordered mesoporous carbons (OMCs) are ideal host materials that can provide the desirable electrical conductivity and ion accessibility for high-capacity oxide electrode materials in lithium-ion batteries (LIBs). To this end, however, it is imperative to establish the correlations among material morphology, pore structure and electrochemical performance. Here, we fabricate an ordered mesoporous carbon nanowire (OMCNW)/Fe2O3 composite utilizing a novel soft-hard dual-template approach. The structure and electrochemical performance of OMCNW/Fe2O3 were systematically compared with single-templated OMC/Fe2O3 and carbon nanowire/Fe2O3 composites. This dual-template strategy presents synergetic effects combining the advantages of both soft and hard single-template methods. The resulting OMCNW/Fe2O3 composite enables a high pore volume, high structural stability, enhanced electrical conductivity and Li+ accessibility. These features collectively enable excellent electrochemical cyclability (1200 cycles) and a reversible Li+ storage capacity as high as 819 mA h g(-1) at a current density of 0.5 A g(-1). Our findings highlight the synergistic benefits of the dual-template approach to heterogeneous composites for high performance electrochemical energy storage materials.
机译:有序介孔碳(OMCs)是理想的主机材料能提供理想的电导率和离子的可访问性高容量氧化物电极材料锂离子电池(LIBs)。然而,当务之急是建立物质形态之间的相关性,毛孔结构和电化学性能。我们制造一个有序介孔碳纳米线(OMCNW) / Fe2O3综合利用摘要本文介绍小说dual-template方法。结构和电化学性能OMCNW / Fe2O3系统相比single-templated OMC / Fe2O3和碳纳米线/ Fe2O3复合材料。结合策略呈现协同作用的影响包括软实时和硬实时的优势单模板方法。OMCNW / Fe2O3复合使高孔隙体积,结构稳定性高,增强电电导率和李+可访问性。集体的特性使优秀的电化学cyclability(1200次)和一个可逆的李+存储容量高达819毫安h g(1)电流密度为0.5 g(1)。调查结果突出的协同效益异构的dual-template方法为高性能电化学复合材料能源存储材料。

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