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Highly Strong Interaction between Fe/Fe3C Nanoparticles and N-Doped Carbon toward Enhanced Oxygen Reduction Reaction Performance (Part. Part. Syst. Charact. 1/2023)
Particle & Particle Systems Characterization ( IF 2.7 ) Pub Date : 2023-01-21 , DOI: 10.1002/ppsc.202370001
Jianpeng Li 1 , Dingshu Xiao 1 , Peichu Wang 2 , Hongyan Chen 1 , Minghua Deng 2 , Degang Zhu 2 , Jie Yu 3
Particle & Particle Systems Characterization ( IF 2.7 ) Pub Date : 2023-01-21 , DOI: 10.1002/ppsc.202370001
Jianpeng Li 1 , Dingshu Xiao 1 , Peichu Wang 2 , Hongyan Chen 1 , Minghua Deng 2 , Degang Zhu 2 , Jie Yu 3
Affiliation
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In article 2200141, Li and co-workers grow Fe/Fe3C nanoparticles into N-doped carbon to induce a strong interaction between Fe species and carbon matrix, which is beneficial for electron transfer and endows the catalyst with enhanced catalytic activity toward oxygen reduction reaction.
中文翻译:
Fe/Fe3C 纳米颗粒与 N 掺杂碳之间的强相互作用增强了氧还原反应性能(Part. Part. Syst. Charact. 1/2023)
在文章 2200141 中,Li 和同事将 Fe/Fe 3 C 纳米粒子生长到 N 掺杂碳中,以诱导 Fe 物种与碳基质之间的强相互作用,这有利于电子转移并赋予催化剂增强的氧还原催化活性反应。
更新日期:2023-01-24
中文翻译:

Fe/Fe3C 纳米颗粒与 N 掺杂碳之间的强相互作用增强了氧还原反应性能(Part. Part. Syst. Charact. 1/2023)
在文章 2200141 中,Li 和同事将 Fe/Fe 3 C 纳米粒子生长到 N 掺杂碳中,以诱导 Fe 物种与碳基质之间的强相互作用,这有利于电子转移并赋予催化剂增强的氧还原催化活性反应。