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Xin Zeng,Yong Zhang,Xuheng Li et al. Xin Zeng et al.
We also conducted a preliminary investigation into the application potential of Ni/Pt DACs in flexible zinc-air batteries (ZABs), including DFT theoretical analysis.
Siyao Zhang,Ruobing Tian,Yuanna Sun et al. Siyao Zhang et al.
Zinc-air batteries (ZABs) have gained increasing attention due to their high energy density and environmental sustainability. However, challenges such as dendrite formation on zinc anodes in flexible ZABs, particularly under highly alkaline...
Quanhu Sun,Zilin Chen,Keyi Dong et al. Quanhu Sun et al.
Rechargeable flexible zinc-air batteries (ZABs) represent a promising energy-supply device for wearable electronics due to their low cost, safety and high energy density, but their electrochemical performance often suffers from the sluggish reaction kinetics of air electrode and poor moisture-retention
Zhixin Wang,Chuanjun Fan,Yingjie Chen et al. Zhixin Wang et al.
With the increasing demand for flexible, rechargeable zinc-air batteries (ZABs), developing efficient oxygen electrocatalysts is challenging. A large specific surface area and porous structure are critical for electrochemical performance bu...
Yongfa Huang,Tingzhen Li,Runxin Huang et al. Yongfa Huang et al.
In the context of energy conversion, the design and synthesis of high-performance metal-free carbon electrocatalysts for the oxygen reduction reaction (ORR) is crucial. Herein, a one-step nitrogen doping/extraction strategy is proposed to f...
Zhe Liu,Lei Chen,Xiaoliang Zhang et al. Zhe Liu et al.
Flexible Zn-air batteries (FZABs) are regarded as promising energy storage devices for wearable electronics because of their intrinsic safety and high energy densities. However, the low water absorption, low ionic conductivity, and poor wat...
Han Diao,Minghui Wang,Senjie Dong et al. Han Diao et al.
Promoting the rate of the oxygen reduction reaction (ORR) is critical for boosting the overall energy efficiency of the flexible zinc-air batteries (FZABs).
Lianfei Zhao,Jingjing Fei,Wentian Wei et al. Lianfei Zhao et al.
Flexible zinc-air batteries (FZABs) present a promising solution for the next generation of power sources in wearable electronics, owing to their high energy density, cost-effectiveness, and safety. However, solid-state electrolytes for FZA...
Yifan Liu,Denise Bildan,Xiangqun Zhuge et al. Yifan Liu et al.
Enhancing ionic conductivity and electrolyte uptake is of significance for gel polymer electrolytes (GPEs) for flexible zinc-air batteries (FZABs).
Zihan Wang,Jing Ren,Guoqiang Ling et al. Zihan Wang et al.
The development of an integrated air cathode with superior oxygen reduction reaction (ORR) performance is fundamental to flexible zinc-air batteries (ZABs) for wearable electronics.
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