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首页> 外文期刊>Electrochimica Acta >Hierarchical graphene@TiO2 sponges for sodium-ion storage with high areal capacity and robust stability
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Hierarchical graphene@TiO2 sponges for sodium-ion storage with high areal capacity and robust stability

机译:具有高面积容量和稳健稳定性的钠离子储存的分层石墨烯@ TiO2海绵

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The search for high mass-loaded, long-cycle-life and high-rate electrodes for sodium-ion batteries is an enormous challenge. Here, a free-standing hierarchical sponge composed of the upper-layer Graphene@TiO2 composites and under-layer graphene (G@TiO2/G) was prepared as a sodium-ion anode. Thereinto, layer-by-layer graphene sheets not only construct robust framework but also guarantee fast electron transport paths, and the interconnected macroporous structure facilitates rapid ion transport. Moreover, the ultrasmall TiO2 nanodots offer the short diffusion path and fast pseudocapacitive sodium storage capability. Therefore, such G@TiO2/G electrode exhibits an ultralong cycle life (retaining 101 mA h g(-1) after 20,000 cycles at 2 A g(-1)), a superior capacity (260 mA h g(-1) at 0.05 A g(-1)) and a high rate capability (53 mA h g(-1) at 10 A g(-1)) under a mass loading of 2.5 mg cm(-2). Impressively, the excellent cycling stability (retaining 1.37 mA h cm(-2) after 300 cycles at 0.1 A g(-1)) and high areal capacity (2.27 mA h cm(-2) at 0.53 mA cm(-2)) are also achieved even at a high mass loading of 10.5 mg cm(-2). (C) 2020 Elsevier Ltd. All rights reserved.
机译:用于钠离子电池高的质量加载的,长的循环寿命和高速率的电极的搜索是一个巨大的挑战。在这里,一个独立的分层海绵构成的上层侧层石墨烯@二氧化钛复合物的和下层石墨烯(G @的TiO2 / G)制备为钠离子阳极。到其中,层 - 层石墨烯片不仅构造可靠的框架也保证快速电子传输路径,和所述互连的大孔结构有利于快速离子传递。此外,超小的TiO 2纳米点提供短的扩散路径和快速赝存储钠能力。因此,这样的摹@的TiO2 / G电极展品的超长循环寿命(保持101毫安汞柱(-1)后20,000个周期以2 A G(-1)),具有优异的电容(260毫安汞柱(-1)在0.05甲克(-1))和高倍率性能(53毫安汞柱(-1)为2.5mg厘米(-2)的质量负载下10 A G(-1))。令人印象深刻的,优异的循环稳定性(保持300次循环后1.37毫安高厘米(-2)在0.1 A克(-1))和高面积容量(2.27毫安高厘米(在0.53毫安厘米-2)(-2))即使在10.5毫克厘米(-2)高的质量负载,也能够实现。 (c)2020 elestvier有限公司保留所有权利。

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