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Enhancement of cyclability of urchin-like rutile TiO2 submicron spheres by nanopainting with carbon

机译:碳纳米涂料增强类海胆金红石型TiO2亚微米球的可循环性

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摘要

Phase-pure urchin-like rutile TiO2 (U-TiO2) submicron (<1 μm) spheres composed of numerous single-crystalline nanorods are successfully synthesized using a surfactant-free wet-chemical route. In addition, a reliable mechanism for the formation of U-TiO2, different from the well-known "growth-then-assembly" mode, is suggested. To provide a highly electron-conducting network, the U-TiO2 submicron spheres are nanopainted with a conductive amorphous carbon layer. As anodes for Li-ion batteries, the carbon-coated U-TiO2 submicron sphere electrodes show enhanced cycling performance, maintaining a reversible capacity of 165.7 mA h g~(-1) after 100 cycles at a rate of 0.2 C; this is attributed to the provision of an efficient electron-transport path by the conductive carbon.
机译:使用无表面活性剂的湿化学方法成功地合成了由许多单晶纳米棒组成的纯相的海胆状金红石型TiO2(U-TiO2)亚微米(<1μm)球。此外,提出了一种不同于已知的“先生长后组装”模式的可靠的形成U-TiO2的机制。为了提供高度导电的网络,U-TiO2亚微米球被纳米漆有导电的无定形碳层。作为锂离子电池的阳极,碳包覆的U-TiO2亚微米球形电极表现出增强的循环性能,在以0.2 C的速率循环100次后,可逆容量保持为165.7 mA h g〜(-1)。这归因于导电碳提供了有效的电子传输路径。

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