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首页> 外文期刊>Advanced composites and hybrid materials >In situ growth of bimetallic nickel cobalt sulfide (NiCo2S4) nanowire arrays encapsulated by nitrogen-doped carbon on carbon cloth as binder-free and flexible electrode for high-performance aqueous Zn batteries
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In situ growth of bimetallic nickel cobalt sulfide (NiCo2S4) nanowire arrays encapsulated by nitrogen-doped carbon on carbon cloth as binder-free and flexible electrode for high-performance aqueous Zn batteries

机译:氮掺杂碳封装在碳布上的双金属镍钴硫化物(NiCo2S4)纳米线阵列原位生长为高性能水系锌电池的无粘结剂柔性电极

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Recently, aqueous nickel-zinc (Ni-Zn) batteries have abundant application potential due to its large-scale energy storage systems. However, traditional cathode materials still have the disadvantage of having much lower specific capacity than their theoretical capacity and poor cycle performance. The development of bond-free flexible cathode electrodes for high-performance aqueous Zn batteries remains a tremendous challenge. Herein, a simple method was reported to in situ grow NiCo2S4 acicular nanowire arrays encapsulated by nitrogen-doped carbon on carbon cloth (denoted as CC@ NC-NiCo2S4) as binder- free and flexible electrode for high-performance aqueous Zn batteries. When CC@ NC-NiCo2S4 was used as a stand-alone cathode material, the prepared aqueous CC@ NC-NiCo2S4//Zn battery exhibits excellent rate capability (0.58 mAh cm(-2) at 2 mA cm(-2) and 0.46 mAh cm(-2) at 20 mA cm(-2)) and superior cycling performance (80 capacity retention at 4.65 A g(-1) after 1000 cycles, based on the NiCo2S4 active material). More importantly, a quasisolid-state CC@NC-NiCo2S4/Zn cell has also been fabricated and exhibits an outstanding energy density of 238 Wh kg(-)1 at a power density of 1.27 kW kg(-1) and 89 capacitance retention for 500 cycles with 5 mA cm(-2). Those results showed that it is much higher than that of other reported (Ni-Zn) batteries, indicating its excellent potential practical applications for high-performance aqueous Zn batteries.
机译:近年来,水系镍锌(Ni-Zn)电池由于其大规模的储能系统而具有丰富的应用潜力。然而,传统正极材料仍存在比容量远低于其理论容量和较差循环性能的缺点。开发用于高性能水系锌电池的无键柔性阴极电极仍然是一个巨大的挑战。本文报道了一种简单的方法,将氮掺杂碳封装在碳布上(表示CC@为NC-NiCo2S4)上原位生长NiCo2S4针状纳米线阵列,作为高性能水系锌电池的无粘结剂柔性电极。当CC@NC-NiCo2S4作为独立正极材料时,制备的NC-NiCo2S4//Zn电池CC@表现出优异的倍率能力(2 mA cm(-2)时为0.58 mAh cm(-2),20 mA cm(-2)时为0.46 mAh cm(-2)),循环性能优异(基于NiCo2S4活性材料,循环1000次后,4.65 A g(-1)时容量保持率为80%)。更重要的是,还制备了一种准固态CC@NC-NiCo2S4/Zn电池,在1.27 kW kg(-1)的功率密度下表现出238 Wh kg(-)1的出色能量密度和89%的电容保持率,在5 mA cm(-2)下循环500次。这些结果表明,它远高于其他已报道的(Ni-Zn)电池,表明其在高性能水系锌电池中具有出色的实际应用潜力。

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