Matches in SemOpenAlex for { <https://semopenalex.org/work/W4283207566> ?p ?o ?g. }
- W4283207566 endingPage "25607" @default.
- W4283207566 startingPage "25595" @default.
- W4283207566 abstract "Electrolysis of water for producing hydrogen instead of traditional fossil fuels is one of the most promising methods to alleviate environmental pollution and energy crisis. In this work, Fe and F ion co-doped Ni3S2 nanoarrays grown on Ni foam substrate were prepared by typical hydrothermal and sulfuration processes for the first time. Density functional theory (DFT) calculation demonstrate that the adsorption energy of the material to water is greatly enhanced due to the doping of F and Fe, which is conducive to the formation of intermediate species and the improvement of electrochemical performance of the electrode. The adsorption energy of anions (F and S) and cations (Fe and Ni) to water in each material was also calculated, and the results showed that F ion showed the most optimal adsorption energy of water, which proved that the doping of F and Fe was beneficial to improve the electrochemical performance of the electrode. It is worth noting that the surface of Fe–F–Ni3S2 material will undergo reconstruction during the process of water oxidation reaction and urea oxidation reaction, and amorphous oxides or hydroxides in situ would be formed on the surface of electrode, which are the real active species." @default.
- W4283207566 created "2022-06-22" @default.
- W4283207566 creator A5011040657 @default.
- W4283207566 creator A5013582226 @default.
- W4283207566 creator A5045945306 @default.
- W4283207566 creator A5065935918 @default.
- W4283207566 date "2022-07-01" @default.
- W4283207566 modified "2023-09-27" @default.
- W4283207566 title "Swapping catalytic active sites from cationic Ni to anionic F in Fe–F–Ni3S2 enables more efficient alkaline oxygen evolution reaction and urea oxidation reaction" @default.
- W4283207566 cites W2159202183 @default.
- W4283207566 cites W2254841012 @default.
- W4283207566 cites W2276718738 @default.
- W4283207566 cites W2319908885 @default.
- W4283207566 cites W2411378663 @default.
- W4283207566 cites W2411919296 @default.
- W4283207566 cites W2505669339 @default.
- W4283207566 cites W2593485235 @default.
- W4283207566 cites W2603007583 @default.
- W4283207566 cites W2738526651 @default.
- W4283207566 cites W2740511174 @default.
- W4283207566 cites W2753979754 @default.
- W4283207566 cites W2759053680 @default.
- W4283207566 cites W2762035214 @default.
- W4283207566 cites W2765164073 @default.
- W4283207566 cites W2765612610 @default.
- W4283207566 cites W2767755349 @default.
- W4283207566 cites W2769522417 @default.
- W4283207566 cites W2782379324 @default.
- W4283207566 cites W2783522744 @default.
- W4283207566 cites W2784899684 @default.
- W4283207566 cites W2791104788 @default.
- W4283207566 cites W2801859141 @default.
- W4283207566 cites W2804278674 @default.
- W4283207566 cites W2899342562 @default.
- W4283207566 cites W2900709560 @default.
- W4283207566 cites W2912566470 @default.
- W4283207566 cites W2920270139 @default.
- W4283207566 cites W2921145747 @default.
- W4283207566 cites W2921794778 @default.
- W4283207566 cites W2936570570 @default.
- W4283207566 cites W2937604719 @default.
- W4283207566 cites W2945004585 @default.
- W4283207566 cites W2953801922 @default.
- W4283207566 cites W2955397930 @default.
- W4283207566 cites W2987609761 @default.
- W4283207566 cites W2987725312 @default.
- W4283207566 cites W2995181502 @default.
- W4283207566 cites W2996144950 @default.
- W4283207566 cites W3016537448 @default.
- W4283207566 cites W3047905750 @default.
- W4283207566 cites W3120721923 @default.
- W4283207566 cites W3154697727 @default.
- W4283207566 cites W3160399625 @default.
- W4283207566 cites W3161538899 @default.
- W4283207566 cites W3171940494 @default.
- W4283207566 cites W3175543861 @default.
- W4283207566 cites W3185295154 @default.
- W4283207566 cites W3187877298 @default.
- W4283207566 cites W3202584056 @default.
- W4283207566 cites W3214991549 @default.
- W4283207566 cites W4200300910 @default.
- W4283207566 cites W4200413973 @default.
- W4283207566 cites W4210806743 @default.
- W4283207566 cites W4214863972 @default.
- W4283207566 doi "https://doi.org/10.1016/j.ijhydene.2022.05.294" @default.
- W4283207566 hasPublicationYear "2022" @default.
- W4283207566 type Work @default.
- W4283207566 citedByCount "4" @default.
- W4283207566 countsByYear W42832075662023 @default.
- W4283207566 crossrefType "journal-article" @default.
- W4283207566 hasAuthorship W4283207566A5011040657 @default.
- W4283207566 hasAuthorship W4283207566A5013582226 @default.
- W4283207566 hasAuthorship W4283207566A5045945306 @default.
- W4283207566 hasAuthorship W4283207566A5065935918 @default.
- W4283207566 hasConcept C127413603 @default.
- W4283207566 hasConcept C135473242 @default.
- W4283207566 hasConcept C147789679 @default.
- W4283207566 hasConcept C150394285 @default.
- W4283207566 hasConcept C156622251 @default.
- W4283207566 hasConcept C161790260 @default.
- W4283207566 hasConcept C163127949 @default.
- W4283207566 hasConcept C17525397 @default.
- W4283207566 hasConcept C178790620 @default.
- W4283207566 hasConcept C179104552 @default.
- W4283207566 hasConcept C185592680 @default.
- W4283207566 hasConcept C192562407 @default.
- W4283207566 hasConcept C35590869 @default.
- W4283207566 hasConcept C42360764 @default.
- W4283207566 hasConcept C48256821 @default.
- W4283207566 hasConcept C52859227 @default.
- W4283207566 hasConcept C55493867 @default.
- W4283207566 hasConcept C56052488 @default.
- W4283207566 hasConcept C65165184 @default.
- W4283207566 hasConcept C68801617 @default.
- W4283207566 hasConcept C71392577 @default.
- W4283207566 hasConceptScore W4283207566C127413603 @default.
- W4283207566 hasConceptScore W4283207566C135473242 @default.
- W4283207566 hasConceptScore W4283207566C147789679 @default.