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CoOx-NCNT-Supported NiFe-Selenide Nanosheets as an Efficient Bifunctional Electrocatalyst for Water Splitting
被引:7
|作者:
Hameed, Arslan
[1
]
Nisar, Arooj
[1
]
Nasim, Fatima
[1
]
Nadeem, Muhammad Amtiaz
[2
]
Nadeem, Muhammad Arif
[1
,3
]
机构:
[1] Quaid I Azam Univ, Dept Chem, Catalysis & Nanomat Lab 27, Islamabad 45320, Pakistan
[2] SABIC Corp Res & Dev CRD KAUST, Thuwal 23955, Saudi Arabia
[3] Pakistan Acad Sci, Islamabad 44050, Pakistan
关键词:
OXYGEN EVOLUTION REACTION;
NICKEL-IRON SELENIDE;
DOPED CARBON NANOTUBES;
ELECTRONIC-STRUCTURE;
HYDROGEN EVOLUTION;
COP NANOPARTICLES;
RECENT PROGRESS;
CATALYSTS;
FOAM;
PERFORMANCE;
D O I:
10.1021/acs.energyfuels.3c03146
中图分类号:
TE [石油、天然气工业];
TK [能源与动力工程];
学科分类号:
0807 ;
0820 ;
摘要:
Efficient and stable electrocatalysts play a fundamental role in advancing the kinetics of water splitting for clean hydrogen production. Transition-metal selenides have been explored as viable candidates for water splitting due to their high abundance and remarkable activities. In this work, we present a novel and versatile strategy to synthesize a high-performance electrocatalyst (NiFeSe@CoOx-NCNTs) that exhibits excellent electrocatalytic activity for both the oxygen evolution reaction (OER) and the hydrogen evolution reaction (HER). NiFeSe@CoOx-NCNTs have been fabricated by the selenization of NiFe-LDH/CoOx-NCNTs which were synthesized by adopting a hydrothermal approach. The resulting material demonstrates an OER overpotential (eta) of only 240 mV at 20 mA/cm(2), accompanied by a small Tafel value of 59.2 mV/dec. The catalyst also exhibits outstanding electrocatalytic activity toward HER with an eta of 145 mV at 20 mA/cm(2). The better HER kinetics on the surface of NiFeSe@CoOx-NCNTs is further supported by a small Tafel slope of similar to 169 mV/dec. The small charge transfer resistance (R-ct) experienced by NiFeSe@CoOx-NCNTs during both the OER and HER is an indication of the fast movement of active species, which contributes to the enhanced electrocatalytic activity. The high stability of NiFeSe@CoOx-NCNTs for a period of 15 h makes the electrocatalyst an appealing candidate for energy conversion systems.
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页码:586 / 597
页数:12
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