3D hierarchical heterostructured LSTN@NiMn-layered double hydroxide as a bifunctional water splitting electrocatalyst for hydrogen production

被引:77
作者
Khan, Ramsha [1 ]
Mehran, Muhammad Taqi [1 ]
Baig, Mutawara Mahmood [1 ]
Sarfraz, Bilal [1 ]
Naqvi, Salman Raza [1 ]
Niazi, Muhammad Bilal K. [1 ]
Khan, Muhammad Zubair [2 ]
Khoja, Asif Hussain [3 ]
机构
[1] Natl Univ Sci & Technol NUST, Sch Chem & Mat Engn SCME, H-12, Islamabad 44000, Pakistan
[2] GIK Inst Engn Sci & Technol, Dept Mat Engn, Topi 23640, Kpk, Pakistan
[3] Natl Univ Sci & Technol NUST, US Pakistan Ctr Adv Studies Energy USPCAS E, Dept Thermal Energy Engn, H-12, Islamabad 44000, Pakistan
关键词
Bifunctional electrocatalyst; Water splitting; Oxygen evolution reaction (OER); Layered double hydroxide; Perovskite; Hydrogen evolution reaction (HER); OXYGEN EVOLUTION; NANOWIRE ARRAYS; FUEL-CELLS; OXIDE; GRAPHENE; PERFORMANCE; PEROVSKITE; NANOSHEETS; EFFICIENT; ELECTRODE;
D O I
10.1016/j.fuel.2020.119174
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
The development of bifunctional electrocatalyst with effective activity and high stability for water splitting reactions is essential for hydrogen production and fuel cell technology. Herein, a 3D hierarchical heterostructure LSTN@NiMn-layered double hydroxide (La0.4Sr0.4Ti0.9Ni0.1O3-delta@NiMn-LDH) supported on highly conductive nickel foam, is presented as a novel bifunctional electrocatalyst with outstanding performance. LSTN heterostructure synthesized by sol-gel method followed by hydrothermal reaction to grow LDH layers (LSTN@NiMn-LDH) resulted in phenomenal bifunctional activity towards both the oxygen evolution reaction (OER) and the hydrogen evolution reaction (HER), by exhibiting a low overpotential of 125 mV at 15 mA cm(-2) (OER) and 32 mV at 10 mA cm(-2) (HER). Moreover, the 3D electrode showed good long-term durability for 24 hrs. stability test at a current density of 100 mu A cm(-2), as well as constant LSV results after operating HER for 1000 cycles. This approach of preparing heterostructure LSTN@NiMn-LDH combines the fundamental properties of La0.4Sr0.4Ti0.9Ni0.1O3-delta (highly efficient HER catalyst) with NiMn-LDH (catalytically active for OER) by using interface engineering, resultantly opens a new way of enhancing the overall activity of water splitting reactions.
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页数:8
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