首页> 外文OA文献 >Tuned in situ growth of nanolayered rGO on 3D Na3V2(PO4)3 matrices: A step toward long lasting, high power Na-Ion batteries
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Tuned in situ growth of nanolayered rGO on 3D Na3V2(PO4)3 matrices: A step toward long lasting, high power Na-Ion batteries

机译:纳米层rGO在3D Na3V2(PO4)3矩阵上的原位生长调整:向持久耐用的高功率Na-离子电池迈出的一步

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摘要

Even though significant improvements have been made in sodium ion batteries, battery management mandates that all batteries in a pack are kept at an acceptable level of more than 80% capacity retention after a long cycle when it is tested for emergencies. Based on these realistic facts, the present study profitably exploits in situ grown reduced graphene oxide on 3D Na3V2 (PO4)3 matrices exhibiting a high rate performance and a specific discharge capacity of 117 mAh g-1. Unlike the earlier literature reports, it is demonstrated that the fabricated electrode shows \u3e85% capacity retention after 6000 cycles at 10 C, the longest cycle life reported till date. The work also reasons in-depth the outstanding sodiation/desodiation capabilities to the low hysteresis voltage and how these electrodes can be used for deep discharges by extending the potential window to 1.3-3.8 V (vs Na/Na+) resulting in a noteworthy specific capacity of ≈165.4 mAh g-1 at 1 C.
机译:即使钠离子电池已取得重大进步,但电池管理要求将电池组中的所有电池经过长时间的紧急情况测试后,保持在80%以上的可接受的容量保持水平。基于这些现实事实,本研究在表现出高倍率性能和117 mAh g-1的特定放电容量的3D Na3V2(PO4)3矩阵上原位生长还原氧化石墨烯,有利可图。与较早的文献报道不同,已证明所制造的电极在10 C下进行6000次循环后显示出\ u3e85%的容量保持率,这是迄今为止报道的最长循环寿命。这项工作还深深地解释了低磁滞电压具有出色的硫化/脱盐能力,以及如何通过将电势窗口扩展到1.3-3.8 V(vs Na / Na +)来将这些电极用于深放电,从而产生了值得注意的比容量在1 C时约为≈165.4mAh g-1

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