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首页> 外文期刊>Angewandte Chemie >Ultrathin Titanate Nanosheets/Graphene Films Derived from Confined Transformation for Excellent Na/K Ion Storage
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Ultrathin Titanate Nanosheets/Graphene Films Derived from Confined Transformation for Excellent Na/K Ion Storage

机译:超薄钛酸纳型纳米片/石墨烯薄膜衍生自用于优异Na / K离子储存的狭窄变换

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摘要

Confined transformation of assembled two-dimensional MXene (titanium carbide) and reduced graphene oxide (rGO) nanosheets was employed to prepare the free-standing films of the integrated ultrathin sodium titanate (NTO)/potassium titanate (KTO) nanosheets sandwiched between graphene layers. The ultrathin Ti-based nanosheets reduce the diffusion distance while rGO layers enhance conductivity. Incorporation of graphene into the titanate films produced efficient binder-free anodes for ion storage. The resulting flexible NTO/rGO and KTO/rGO electrodes exhibited excellent rate performances and long cycling stability characterized by reversible capacities of 72mAhg(-1) at 5Ag(-1) after 10000 cycles and 75mAhg(-1) after 700 cycles at 2Ag(-1) for sodium and potassium ion batteries, respectively. These results demonstrate the superiority of the unique sandwich-type electrodes.
机译:狭窄的组装二维蒙片(碳化钛)和氧化铟烯氧化物(RGO)纳米片的狭窄变换用于制备集成超钛酸钠(NTO)/钛酸钾(KTO)纳米液夹在石墨烯层之间的固定薄膜。 超薄的基于TI的纳米片减小了扩散距离,而RGO层增强导电性。 将石墨烯掺入钛酸盐薄膜生产有效的无粘合剂阳极,用于离子储存。 得到的柔性NTO / RGO和KTO / RGO电极表现出优异的速率性能和长的循环稳定性,其特征在于在700次循环后5AG(-1)在2AG( -1)分别用于钠和钾离子电池。 这些结果表明了独特的夹层型电极的优越性。

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