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首页> 外文期刊>Nanoscale >Controllable synthesis of monodisperse ultrathin SnO2 nanorods on nitrogen-doped graphene and its ultrahigh lithium storage properties
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Controllable synthesis of monodisperse ultrathin SnO2 nanorods on nitrogen-doped graphene and its ultrahigh lithium storage properties

机译:可控合成单分散的超薄SnO2 nitrogen-doped石墨烯及其纳米棒超高锂存储属性

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Monodisperse ultrathin SnO2 nanorods on nitrogen-doped graphene were firstly synthesized by a facile one-step hydrothermal strategy. The uniformed composites with high nitrogen content and ultrathin SnO2 nanorods of 2.5-1.0 nm in diameter and 10-15 nm in length show a high reversible specific capacity, superior rate capability and outstanding cycling stability (803 mA h g~(-1)) as anode materials for lithium ion batteries, owing to the synergistic effect between GS and SnO2 and nitrogen-doping, which can greatly decrease the energy barrier for Li penetrating the pyridinic defects and improve the electronic structures. This work opens the door to prepare metal oxide/GS-N composites with superior lithium storage properties and engineering of graphene composites for advanced energy storage.
机译:单分散的超薄SnO2纳米棒nitrogen-doped首先合成石墨烯由一个简单一步水热的策略。穿制服的含氮量高的复合材料和超薄SnO2纳米棒2.5 -1.0海里直径和长度显示高10 - 15海里可逆比容量,优越的速度能力和杰出的循环稳定性(803马h g ~(1))作为锂离子的负极材料电池,由于协同效应GS和SnO2 nitrogen-doping之间可以大大减少能量势垒李吗渗透pyridinic缺陷和提高电子结构。金属氧化物/ GS-N复合材料做准备优越的锂存储属性工程先进的石墨烯复合材料能量储存。

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