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Na3V2(PO4)(3) coated by N-doped carbon from ionic liquid as cathode materials for high rate and long-life Na-ion batteries

机译:Na3V2 (PO4)(3)涂层的n型碳离子液体作为高速率和阴极材料长寿命Na-ion电池

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摘要

A facile and simple hydrothermal assisted sol-gel route was developed to prepare nitrogen doped carbon coated Na3V2(PO4)(3) nanocomposites (denoted as NVP@C-N) as cathodes for sodium ion batteries (NIBs). An ionic liquid (EMIm-dca) was used as the nitrogen doped carbon source. The optimized N-doped carbon coated Na3V2(PO4)(3) (denoted as NVP@C-N150) displays a very thin and uniform N-doped carbon coating layer (thickness: similar to 2 nm), showing an excellent sodium storage performance (85 mA h g(-1) at 20 C after 5000 cycles) and high rate capability (71 mA h g(-1) at 80 C). Such a superior sodium storage performance derives from the nitrogen doping carbon coating, triggering amounts of extrinsical defects and active sites in the N-doped amorphous carbon layer, which highly accelerates Na-ion and electron transport. This approach is simple, facile and shows easy scale-up. It could be extended to other materials for energy storage.
机译:一个简单和简单的水热辅助溶胶-凝胶法路线是准备开发的氮掺杂碳涂层Na3V2 (PO4)(3)纳米复合材料(表示NVP@C-N)作为钠离子的阴极电池(上司)。用作氮掺杂碳源。优化n型碳涂层Na3V2 (PO4) (3)(表示NVP@C-N150)显示一个非常薄统一的n型碳涂料层(厚度:类似于2 nm),一个优秀的钠存储性能马(85 h后20 C g (1)马5000周期)和高速率的能力(71 hg(1)在80 C)。这样的优质钠存储性能源于氮掺杂碳涂层,从而引发大量的非本质的缺陷和活跃的站点n型非晶态高加速Na-ion和碳层电子传递。简单并显示简单的扩大。扩展到其他材料可以用于储存能量。

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