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首页> 外文期刊>Materials Chemistry Frontiers >Co3Fe7 nanoparticles encapsulated in porous nitrogen-doped carbon nanofibers as bifunctional electrocatalysts for rechargeable zinc–air batteries
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Co3Fe7 nanoparticles encapsulated in porous nitrogen-doped carbon nanofibers as bifunctional electrocatalysts for rechargeable zinc–air batteries

机译:Co3Fe7纳米颗粒封装在多孔nitrogen-doped纳米碳纤维作为双功能electrocatalysts为充电锌空气电池

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摘要

Exploration of inexpensive and high-performance carbon-based electrocatalysts with abundant active sites for oxygen reduction and evolution reactions is vital for enhancing the performance of zinc–air batteries. Herein, well-dispersed Co3Fe7 nanoparticles encapsulated in porous nitrogen-doped carbon nanofibers (Co3Fe7-PCNF-850) are synthesized by employing polyvinylpyrrolidone(PVP)asthepore-formingagent via simple electrospinning and subsequent calcination. The resulting Co3Fe7-PCNF-850 with well-dispersed bimetal nanoparticles and a porous structure shows a half-wave potential of 0.85 V (vs. RHE) comparable to 20 wt% Pt/C for the oxygen reduction reaction, enhanced stability with negligible attenuation after 1000 cycles, high methanol resistance, and low overpotential for the oxygen evolution reaction. When Co3Fe7-PCNF-850 is employed as a cathode electrocatalyst, zinc–air batteries exhibit good cycling stability for 300 h and a high peak power density of 213 mW cm2 due to its excellent bifunctional catalytic activity. This work provides a simple strategy for the combination of hierarchically porous structures of carbon fibers with the optimized bifunctional activity of bimetal nanoparticles to improve battery performance.
机译:探索的廉价和高性能碳基electrocatalysts雄厚活跃的站点减少氧气和演化反应对提高性能是至关重要的锌空气电池。Co3Fe7纳米颗粒封装在多孔nitrogen-doped纳米碳纤维(co3fe7 - pcnf - 850)采用合成聚乙烯吡咯烷酮(PVP) asthepore-formingagent通过简单的电纺的和随后的煅烧。的说法双金属纳米粒子和多孔结构显示了0.85 V的半波电位(与流值)与20 wt %的Pt / C氧还原反应,增强稳定性与1000年之后衰减周期可以忽略不计,高耐甲醇和低的过电压氧发生反应。co3fe7 - pcnf - 850采用作为阴极electrocatalyst,锌空气电池表现好自行车稳定300 h和高的峰值功率密度213 mW cm2由于其优秀的双功能催化活性。提供了一个简单的组合策略分层多孔碳纤维结构优化的双官能的活动双金属纳米粒子改善电池的性能。

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