Alloy-strain-output induced lattice dislocation in Ni <sub>3</sub> FeN/Ni <sub>3</sub> Fe ultrathin nanosheets for highly efficient overall water splitting
Zijian Li(Shanghai University of Sport), Jaephil Cho(Ulsan National Institute of Science and Technology), Xiaoli Jiang(East China Normal University), Xuqiang Ji(Qingdao University), Lijie Zhang(Sinopec (China)), Min Gyu Kim(Korea Maritime and Ocean University), Haeseong Jang(Ulsan National Institute of Science and Technology), Xien Liu(Qingdao University of Science and Technology), Danni Qin(Qingdao University of Science and Technology)
Cited by 83
Related Papers
Electrochemical Ammonia Synthesis via Nitrogen Reduction Reaction on a MoS<sub>2</sub> Catalyst: Theoretical and Experimental Studies
|Advanced Materials|2018|871
Promotion of oxygen reduction by a bio-inspired tethered iron phthalocyanine carbon nanotube-based catalyst
|Nature Communications|2013|750
Sodium‐Decorated Amorphous/Crystalline RuO<sub>2</sub> with Rich Oxygen Vacancies: A Robust pH‐Universal Oxygen Evolution Electrocatalyst
|Angewandte Chemie International Edition|2021|683
Ni-foam supported Co(OH)F and Co–P nanoarrays for energy-efficient hydrogen production <i>via</i> urea electrolysis
|Journal of Materials Chemistry A|2019|267
Moving beyond bimetallic-alloy to single-atom dimer atomic-interface for all-pH hydrogen evolution
|Nature Communications|2021|260