首页> 外文期刊>The Journal of Supercritical Fluids >Uniform and ultrathin carbon-layer coated layered Na2Ti3O7 and tunnel Na(2)Ti(6)O(13 )hybrid with enhanced electrochemical performance for anodes in sodium ion batteries
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Uniform and ultrathin carbon-layer coated layered Na2Ti3O7 and tunnel Na(2)Ti(6)O(13 )hybrid with enhanced electrochemical performance for anodes in sodium ion batteries

机译:均匀和超薄碳层涂覆的分层Na 2 Ti3O7和隧道Na(2)Ti(6)O(13)杂化,具有增强的钠离子电池中的阳极电化学性能

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摘要

Ultrathin and uniform carbon layer-coated layered Na2Ti3O7 and tunnel Na2Ti6O13 hybrids were synthesized via a facile and fast method using supercritical methanol and subsequent carbon coating with liquid carbon dioxide as a coating solvent. The carbon content and relative composition of the layered Na2Ti3O7 and tunnel Na2Ti6O13 phases in the hybrids were controlled by adjusting the calcination temperature. The drawbacks of each material could be overcome in the hybrid by taking advantage of the low volume expansion and high electronic conductivity (Na2Ti6O13), the high capacity (Na2Ti3O7), and a carbon coating. A careful examination of the cyclic voltammetry profiles of the sodium titanate hybrids revealed the existence of two different Na+1 ion diffusion pathways in the layered Na2Ti3O7 phase. Under high discharge-charge conditions, some of the Na+ ion uptake in the layered Na2Ti3O7 and the structural integrity of tunnel Na2Ti6O13 resulted in excellent high-rate performance and long-term cyclability in the hybrid.
机译:通过使用超临界甲醇和随后用液态二氧化碳作为涂料溶剂,通过使用超临界甲醇和随后的碳涂层来合成超薄和均匀的碳层涂覆的层状Na 2 Ti3O7和隧道Na2Ti6O13杂种。通过调节煅烧温度来控制分层Na2Ti3O7和杂交中的隧道Na2Ti6O13相的碳含量和相对组合物。通过利用低体积膨胀和高电子电导率(Na2Ti6O13),高容量(Na2Ti3O7)和碳涂层,可以在混合中克服每种材料的缺点。仔细检查钛酸钠杂种钠的循环伏安法剖面揭示了层状Na2Ti3O7相中的两种不同Na + 1离子扩散途径的存在。在高放电荷载条件下,层状Na2Ti3O7中的一些Na +离子吸收和隧道Na2Ti6O13的结构完整性导致杂交种中的优异高速性能和长期可自由性。

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