首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A self-reconstructed (oxy)hydroxide@nanoporous metal phosphide electrode for high-performance rechargeable zinc batteries
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A self-reconstructed (oxy)hydroxide@nanoporous metal phosphide electrode for high-performance rechargeable zinc batteries

机译:用于高性能可充电锌电池的纳米多孔金属磷化锌电池自重建(氧化氧)氢氧化物电池

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摘要

Rechargeable aqueous zinc batteries have attracted tremendous attention due to their remarkable high capacity, low cost, and good safety. However, their limited interfacial kinetics and poor rate performance have limited their application. Here, a new type of Ni//Zn rechargeable battery is fabricated with self-reconstructed (oxy)hydroxide@nanoporous Ni3P as a self-supported binder-free cathode. The (oxy)hydroxide@nanoporous Ni3P electrode exhibits an area specific capacity of 0.501 mA h cm(-2) and a volume specific capacity of 167.0 mA h cm(-3), and the alkali Zn battery achieves an energy density of 15.38 mW h cm(-3) and a power density of 4.15 W cm(-3), which are higher than most values reported in the literature. Benefiting from the good conductivity of the self-supported electrode, the efficient interfacial charge transfer of amorphous (oxy)hydroxide and fast ion diffusion via the pore channels in the binder-free electrode, the Ni//Zn battery exhibits excellent rate capability and cycling stability (94% retention after 6000 cycles). Combined with its good electrochemical stability and excellent rate performance, this novel electrode shows tremendous potential for application in high-capacity rechargeable Zn batteries.
机译:可充电的锌电池由于其显着的高容量,低成本和良好的安全性而引起了巨大的关注。然而,它们有限的界面动力学和差价率差的差效限制了其应用。这里,一种新型的Ni // Zn可充电电池由自我重建(氧)氢氧化物@纳米多孔Ni3p作为自支撑的粘合剂阴极制造。氢氧化物@纳米孔Ni3P电极具有0.501mA H cm(-2)的面积特异性容量,体积比容量为167.0mA H cm(-3),并且碱锌电池达到15.38 mW的能量密度H cm(-3)和4.15W厘米(-3)的功率密度,其高于文献中报告的大多数值。受益于自支撑电极的良好电导率,通过粘合剂电极中的无定形(氧氧化物)氢氧化物和快速离子扩散的有效界面电荷转移,Ni // Zn电池具有优异的速率和循环稳定性(6000次循环后94%的保留)。结合其良好的电化学稳定性和优异的速率性能,这种新颖的电极显示出在高容量可充电Zn电池中的应用巨大潜力。

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