首页> 外文期刊>Chemistry: A European journal >Ascorbic Acid-Assisted Synthesis of Mesoporous Sodium Vanadium Phosphate Nanoparticles with Highly sp(2)-Coordinated Carbon Coatings as Efficient Cathode Materials for Rechargeable Sodium-Ion Batteries
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Ascorbic Acid-Assisted Synthesis of Mesoporous Sodium Vanadium Phosphate Nanoparticles with Highly sp(2)-Coordinated Carbon Coatings as Efficient Cathode Materials for Rechargeable Sodium-Ion Batteries

机译:抗坏血酸辅助合成具有高sp(2)配位碳涂层的介孔磷酸钒酸钠纳米颗粒作为可充电钠离子电池的高效阴极材料

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摘要

Herein, mesoporous sodium vanadium phosphate nanoparticles with highly sp(2)-coordinated carbon coatings (meso-Na3V2(PO4)(3)/C) were successfully synthesized as efficient cathode material for rechargeable sodium-ion batteries by using ascorbic acid as both the reductant and carbon source, followed by calcination at 750 degrees C in an argon atmosphere. Their crystalline structure, morphology, surface area, chemical composition, carbon nature and amount were systematically explored. Following electrochemical measurements, the resultant meso-Na3V2(PO4)(3)/C not only delivered good reversible capacity (98mAhg(-1) at 0.1Ag(-1)) and superior rate capability (63mAhg(-1) at 1Ag(-1)) but also exhibited comparable cycling performance (capacity retention: approximate to 74% at 450 cycles at 0.4Ag(-1)). Moreover, the symmetrical sodium-ion full cell with excellent reversibility and cycling stability was also achieved (capacity retention: 92.2% at 0.1Ag(-1) with 99.5% coulombic efficiency after 100 cycles). These attributes are ascribed to the distinctive mesostructure for facile sodium-ion insertion/extraction and their continuous sp(2)-coordinated carbon coatings, which facilitate electronic conduction.
机译:在这里,通过使用抗坏血酸作为两种材料,成功地合成了具有高sp(2)配位碳涂层(meso-Na3V2(PO4)(3)/ C)的介孔磷酸钒钒纳米粒子,作为可充电钠离子电池的有效阴极材料。还原剂和碳源,然后在氩气氛中在750摄氏度下煅烧。系统地研究了它们的晶体结构,形态,表面积,化学组成,碳的性质和数量。电化学测量后,所得的meso-Na3V2(PO4)(3)/ C不仅具有良好的可逆容量(在0.1Ag(-1)时为98mAhg(-1))和卓越的速率容量(在1Ag(-1)时为63mAhg(-1) -1)),但还显示出可比的循环性能(容量保持率:在0.4Ag(-1)的450个循环中约为74%)。此外,还获得了具有出色的可逆性和循环稳定性的对称钠离子全电池(容量保持率:在0.1Ag(-1)下为92.2%,在100个循环后的库仑效率为99.5%)。这些属性归因于方便的钠离子插入/提取的独特介观结构及其连续的sp(2)配位的碳涂层,这些涂层有利于电子传导。

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