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Diffusion-controlled evolution of core-shell nanowire arrays into integrated hybrid nanotube arrays for Li-ion batteries

机译:Diffusion-controlled进化的核壳纳米线阵列集成的混合纳米管数组为锂离子电池

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Controlled integration of multiple semiconducting oxides into each single unit of ordered nanotube arrays is highly desired in scientific research for the realization of more attractive applications. We herein report a diffusion-controlled solid-solid route to evolve simplex Co(CO3)_(0.5)(OH)_(0.11)H2O@TiO2 core-shell nanowire arrays (NWs) into CoO-CoTiO3 integrated hybrid nanotube arrays (NTs) with preserved morphology. During the evolution procedure, the decomposition of Co(CO3)_(0.5)(0H)_(0.11)H2O NWs into chains of COCO3 nanoparticles initiates the diffusion process and promotes the interfacial solid-solid diffusion reaction even at a low temperature of 450 °C. The resulting CoO-CoTiO3 NTs possess well-defined sealed tubular geometries and a special "inner-outer" hybrid nature, which is suitable for application in Li-ion batteries (LIBs). As a proof-of-concept demonstration of the functions of such hybrid NTs in LIBs, CoO-CoTiO3 NTs are directly tested as LIB anodes, exhibiting both a high capacity (~600 mA h g~(-1) still remaining after 250 continuous cycles) and a much better cycling performance (no capacity fading within 250 total cycles) than CoO NWs. Our work presents not only a diffusion route for the formation of integrated hybrid NTs but also a new concept that can be employed as a general strategy to fabricate other oxide-based hybrid NTs for energy storage devices.
机译:控制集成多个半导体氧化物到每一个单位有序的纳米管数组是高度期望的科学研究为实现更有吸引力应用程序。diffusion-controlled固相固相的路线发展单纯形有限公司(二氧化碳)_ (0.5)(OH) _ (0.11) H2O@TiO2核壳纳米线阵列CoO-CoTiO3 (NWs)集成混合纳米管阵列(nt)保存形态。的分解过程有限公司(二氧化碳)_ (0.5)(0 h) _(0.11)水NWs成链COCO3纳米颗粒开始扩散过程,促进界面固相固相即使在较低的温度下扩散反应450°C。定义良好的密封管的几何形状和特殊的“inner-outer”混合自然,这是适合在锂离子电池中的应用(LIBs)。这样的混合元的函数库,CoO-CoTiO3 nt和自由阳极直接测试,表现出一个高容量(~ 600 mA h g ~ (1)还剩余250年后)和连续的周期一个更好的循环性能(没有容量比首席运营官NWs消失在250总周期)。不仅工作提出的扩散路径形成集成的混合元也是一个新的作为一个将军的概念,可以使用制造其他氧化物混合策略nt能源存储设备。

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