Transition Metal Compounds on Functionalized Multiwall Carbon Nanotubes for the Efficient Oxygen Evolution Reaction

被引:5
作者
Kang, Sukhyun [1 ]
Lee, Kangpyo [1 ]
Ryu, Jeong Ho [2 ]
Ali, Ghulam [3 ]
Akbar, Muhammad [4 ,5 ]
Chung, Kyung Yoon [4 ,5 ]
Chung, Chan-Yeup [6 ]
Han, HyukSu [7 ]
Kim, Kang Min [1 ]
机构
[1] Korea Inst Ind Technol, Gangneung Si 25440, Gangwon, South Korea
[2] Korea Natl Univ Transportat, Dept Mat Sci & Engn, Chungju 27469, Chungbuk, South Korea
[3] Natl Univ Sci & Technol NUST, US Pakistan Ctr Adv Studies Energy USPCASE, Islamabad 24090, Pakistan
[4] Korea Inst Sci & Technol, Ctr Energy Storage Res, Seoul 02792, South Korea
[5] Korea Univ Sci & Technol, KIST Sch, Div Energy & Environm Technol, Seoul 02792, South Korea
[6] Korea Inst Ceram Engn & Technol, Div Carbon Neutral & Mat Digitalizat, Jinju Si 52851, Gyeongsangnam D, South Korea
[7] Konkuk Univ, Dept Energy Engn, Seoul 05029, South Korea
基金
新加坡国家研究基金会;
关键词
electrocatalyst; oxygen evolution reaction; pulse laser ablation; nanohybrid; multiwall carbon nanotube; PULSED-LASER ABLATION; DOPED CARBON; GRAPHENE OXIDE; REDUCTION; ELECTROCATALYSTS; PERFORMANCE; CATALYSTS; NANOPARTICLES; NANOCRYSTALS; STORAGE;
D O I
10.1021/acsanm.2c05458
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Numerous studies have attempted the oxygen evolution reaction (OER), a key half-reaction for water electrolysis, with low-cost catalysts exhibiting high activity and durability. This study reports a novel catalyst-design strategy for the heterogeneous growth of iron oxide (Fe2O3) nanoparticles on surface-functionalized multiwall carbon nanotubes (MWCNTs) through pulsed laser ablation (PLA). Strong physicochemical interactions at the functional Fe2O3 nanoparticles/conductive MWCNT support interface are confirmed by spectroscopic and computational investigations; the functional interface promotes charge transfer kinetics and reduces the energy barrier for the rate-determining step of OER. Furthermore, semi-circularly arranged Fe2O3 nanoparticles on the one-dimensional tubular MWCNT support, originating from heterogeneous nucleation and growth during the PLA process, facilitate mass and ion transfer during the OER. Thus, the optimized nanohybrid (0.5Fe@MWCNT) exhibits a low overpotential (310 mV) to generate a current density of 10 mA cm(-2) and possesses excellent durability, maintaining a stable current output during 10 h of continuous OER in a 1.0 M KOH electrolyte. Moreover, this synthetic strategy is economically advantageous, as it requires a total processing time of less than 1 h.
引用
收藏
页码:4319 / 4327
页数:9
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