首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Direct Growth of CoFe2 Alloy Strongly Coupling and Oxygen-Vacancy-Rich CoFe2O4 Porous Hollow Nanofibers: an Efficient Electrocatalyst for Oxygen Evolution Reaction
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Direct Growth of CoFe2 Alloy Strongly Coupling and Oxygen-Vacancy-Rich CoFe2O4 Porous Hollow Nanofibers: an Efficient Electrocatalyst for Oxygen Evolution Reaction

机译:CoFe2合金直接耦合和富氧空位的COFE2O4多孔空心纳米纤维的直接生长:一种有效的氧气进化反应电催化剂

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摘要

Efficient electrocatalysts for the oxygen evolution reaction (OER) is crucial for improving the performance of metal-air batteries and water splitting. In this study, the CoFe2 alloy strongly coupling and oxygen-vacancy-rich CoFe2O4 (CoFe2 alloys/CoFe2O4) porous hollow complex nanofibers, as a highly efficient and stable electrocatalyst for OER, have been synthesized via a facile method of electrospinning combining with two-step heat treatment. The obtained CoFe2 alloys/CoFe2O4 porous hollow complex nanofibers show high electrical conductivity with the smaller charge transfer resistance than that of the commercial RuO2, and even two orders of magnitude lower than that of the single CoFe2O4 porous hollow nanofibers. When used as an electrocatalyst for OER, it demonstrates a superior electrochemical performance with an over-potential of 300 mV at the current density of 10 mAcm(-2), which is comparable to that of the commercial RuO2 but obviously better than that of the single CoFe(2)O(4 )porous hollow nanofibers. Moreover, the CoFe2 alloys/CoFe2O4 porous hollow complex nanofibers exhibit remarkably stability with negligible potential increase of only 1.2% at high current density of 100 mAcm(-2) for 16 h. Meanwhile, the CoFe2 alloys/CoFe2O4 porous hollow complex nanofibers also show an excellent hydrogen evolution reaction (HER) activity, affording an over-potential of 152 mV at the current density of 10 mAcm(-2). When using for water splitting in 1 M KOH, the CoFe2 alloys/CoFe2O4 porous hollow complex nanofibers delivers a current density of 10 mAcm(-2) at a cell voltage of 1.687 V. More important, the direct growth of CoFe2 alloys on the CoFe2O4 base of the porous hollow nanofibers can be an effective way to control the coupling of the CoFe2 alloys and CoFe2O4, the electronic conductivity and the active sites, and then the electrochemical performance of OER.
机译:用于氧气进化反应(OER)的高效电催化剂对于提高金属 - 空气电池和水分裂的性能至关重要。在该研究中,Cofe2合金强烈偶联和富氧空位的富含COFE2O4(COFE2合金/ COFE2O4)多孔中空复合纳米纤维,作为透泡的高效且稳定的电催化剂,通过静电纺丝与两个 - 步进热处理。所获得的COFE2合金/ COFE2O4多孔中空复合纳米纤维显示出高电导率,其电荷转移性比商业ruo2的电荷转移性较小,甚至比单个COFE2O4多孔中空纳米纤维的两个数量级低。当用作OER的电催化剂时,它显示出优异的电化学性能,其电流为300 mV,电流密度为10 macm(-2),这与商业ruo2的电流相当,但显然比该商业Ruo2的电流相当单一COFE(2)O(4)多孔中空纳米纤维。此外,COFE2合金/ COFE2O4多孔中空复合纳米纤维具有显着的稳定性,其忽略的潜在增加仅为1.2%,高电流密度为100mmm(-2)。同时,COFE2合金/ COFE2O4多孔中空复合纳米纤维还显示出优异的氢进化反应(其)活性,其在10mmm(-2)的电流密度下为152mV的过电位。当在1M KOH中使用水分裂时,COFE2合金/ COFE2O4多孔中空复合纳米纤维在1.687V的电池电压下提供10mcm(-2)的电流密度。更重要的是COFE2O4上的COFE2合金的直接生长多孔中空纳米纤维的基部可以是控制COFE2合金和COFE2O4,电子电导率和活性位点的偶联的有效方法,然后是OER的电化学性能。

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