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Three-dimensional interpenetrating mesoporous carbon confining SnO2 particles for superior sodiation/desodiation properties

机译:三维渗透介孔碳粒子围SnO2优越sodiation / desodiation属性

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Nanosized SnO2 particles (similar to 2 nm in diameter) are embedded in ordered mesoporous CMK-8 carbon with unique three-dimensional interconnected pore channels and used as a sodium-ion battery (NIB) anode. Due to the CMK-8 confinement effects, the growth of SnO2 is suppressed during synthesis, leading to high material electroactivity. The CMK-8 not only serves as an electronic conducting pathway, but also creates interpenetrating tunnels, which guarantee electrolyte accessibility and thus Na+ transport throughout the electrode. Moreover, the change in the SnO2 volume during sodiation/desodiation can be accommodated by the CMK-8 framework. With a high tap density of similar to n 1000 mg cm(-3) (vs. similar to 800 mg cm(-3) for the conventional NIB anode, hard carbon), the SnO2/ CMK-8 anode shows a high reversible capacity of 800 mA h g(-1) and excellent rate capability, delivering 330 mA h g(-1) in similar to 10 min. The electrode charge storage mechanism is examined using synchrotron X-ray diffraction. We confirm that CMK-8 incorporation can effectively promote the SnO2-Sn conversion reaction and Sn-Na alloying reaction, which are known to be thermodynamically/kinetically difficult, increasing the electrode charge-discharge performance.
机译:纳米尺度的SnO2粒子(类似于2海里直径)是嵌入在有序的介孔CMK-8碳具有独特的三维相互联系的孔隙通道和作为钠电池阳极(嘴)。约束效应,SnO2的增长抑制在合成,导致高electroactivity材料。作为一个电子导电通路,但是还创建了贯穿隧道,保证电解液可访问性,因此Na +运输在整个电极。在SnO2体积变化sodiation / desodiation可以适应的CMK-8框架。类似于n 1000毫克厘米(3)(和类似于800mg厘米(3)传统的NIB阳极,很难碳),SnO2 / CMK-8阳极显示了一个高可逆容量800毫安h g (1)优秀的能力,提供330毫安hg(1)类似于10分钟。电极使用同步存储机制检查x射线衍射。公司能有效地促进SnO2-Sn转换反应和Sn-Na合金化反应,这是已知的热动力学/活动困难,增加了电极的充放电的性能。

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