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Sm_2(Fe,M)_(17)N_x稀土永磁材料的研究进展 被引量:4
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作者 褚卫国 费维栋 +1 位作者 胡晓和 杨德庄 《功能材料》 EI CAS CSCD 北大核心 1999年第5期456-458,共3页
概述了Sm2(Fe,M)17Nx稀土永磁体,详细论述了磁性能及其影响因素,着重强调了成为新一代实用永磁体的巨大潜力,并展望了未来发展趋势。
关键词 Sm2(fe M)17Nx 稀土永磁体 磁性能
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Highly efficient iron–nitrogen electrocatalyst derived from covalent organic polymer for oxygen reduction 被引量:1
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作者 Jianing Guo Mengyao Ning Zhonghua Xiang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2017年第6期1168-1173,共6页
Developing non-precious metal catalyst with high activity, good stability and low cost for electrocatalytic oxygen reduction reaction(ORR) is critical for the wide application of energy conversion system. Here, we d... Developing non-precious metal catalyst with high activity, good stability and low cost for electrocatalytic oxygen reduction reaction(ORR) is critical for the wide application of energy conversion system. Here, we developed a cost–effective synthetic strategy via silica assistance to obtain a novel FeC/Fe–N–C(named as COPBP-PB-Fe-900-SiO) catalyst with effective active sites of Fe–Nand FeC from the rational design two-dimensional covalent organic polymer(COPBP-PB). The nitrogen-rich COP effectively promotes the formation of active Fe–Nsites. Additionally, the silica not only can effectively suppress the formation of large Fe-based particles in the catalysts, but also increases the degree of carbonization of the catalyst.The as-prepared COPBP-PB-Fe-900-SiOcatalyst exhibits high electrocatalytic activity for ORR with a halfwave potential of 0.85 V vs. reversible hydrogen electrode(RHE), showing comparable activity as compared with the commercial Pt/C catalysts in alkaline media. Moreover, this catalyst also shows a high stability with a nearly constant onset potential and half-wave potential after 10,000 cycles. The present work is highly meaningful for developing ORR electrocatalysts toward wide applications. 展开更多
关键词 Oxygen reduction reaction ELECTROCATALYST Covalent organic frameworks Nonprecious metal catalysts fe–n_x
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