Yang Leping, Zhang Xu, Yu Lingxiao, Hou Jianhua, Zhou Zhen, Lv Ruitao
State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing, 100084, China.
Engineering Research Center of Advanced Functional Material Manufacturing of Ministry of Education, School of Chemical Engineering, Zhengzhou University, Zhengzhou, 450001, China.
Adv Mater. 2022 Feb;34(5):e2105410. doi: 10.1002/adma.202105410. Epub 2021 Dec 13.
Noble-metal-free, durable, and high-efficiency electrocatalysts for oxygen reduction and evolution reaction (ORR/OER) are vital for rechargeable Zn-air batteries (ZABs). Herein, a flexible and free-standing carbon fiber membrane immobilized with atomically dispersed Fe-N /C catalysts (Fe/SNCFs-NH ) is synthesized and used as air cathode for ZABs. The intertwined fibers with hierarchical nanopores facilitate the gas transportation, electrolyte infiltration and electron transfer. The large specific surface area exposes a high concentration of Fe-N /C sites embedded in the carbon matrix. Modulation of local atomic configurations by sulfur doping in Fe/SNCFs-NH catalyst leads to excellent ORR and enhanced OER activities. The as-synthesized Fe/SNCFs-NH catalyst demonstrates a positive half-wave potential of 0.89 V and a small Tafel slope of 70.82 mV dec , outperforming the commercial Pt/C (0.86 V/94.74 mV dec ) and most reported M-N /C (M = Fe, Co, Ni) catalysts. Experimental characterizations and theoretical calculations uncover the crucial role of S doping in regulating ORR and OER activities. The liquid-state ZABs with Fe/SNCFs-NH catalyst as air cathode deliver a large peak power density of 255.84 mW cm and long-term cycle durability over 1000 h. Solid-state ZAB shows stable cycling at various flat/bent/flat states, demonstrating great prospects in flexible electronic device applications.
用于氧还原和析氧反应(ORR/OER)的无贵金属、耐用且高效的电催化剂对于可充电锌空气电池(ZAB)至关重要。在此,合成了一种固定有原子分散的Fe-N/C催化剂(Fe/SNCFs-NH)的柔性自支撑碳纤维膜,并将其用作ZAB的空气阴极。具有分级纳米孔的交织纤维促进了气体传输、电解质渗透和电子转移。大的比表面积暴露出嵌入碳基质中的高浓度Fe-N/C位点。通过在Fe/SNCFs-NH催化剂中进行硫掺杂来调节局部原子构型,从而产生优异的ORR和增强的OER活性。所合成的Fe/SNCFs-NH催化剂表现出0.89 V的正半波电位和70.82 mV dec的小塔菲尔斜率,优于商业Pt/C(0.86 V/94.74 mV dec)和大多数报道的M-N/C(M = Fe、Co、Ni)催化剂。实验表征和理论计算揭示了S掺杂在调节ORR和OER活性中的关键作用。以Fe/SNCFs-NH催化剂作为空气阴极的液态ZAB具有255.84 mW cm的大峰值功率密度和超过1000 h的长期循环耐久性。固态ZAB在各种平坦/弯曲/平坦状态下均显示出稳定的循环,在柔性电子器件应用中展现出巨大的前景。