Matches in SemOpenAlex for { <https://semopenalex.org/work/W3089383973> ?p ?o ?g. }
- W3089383973 endingPage "24" @default.
- W3089383973 startingPage "17" @default.
- W3089383973 abstract "Modulate the electronic structure and surface energy by nanostructure and heteroatom doping is an efficient strategy to improve electrocatalytic activity of hydrogen evolution reaction (HER). Herein, nickel incorporated WP2 self-supporting nanosheet arrays cathode was synthesized on carbon cloth (Ni-WP2 NS/CC) by in-situ phosphating reduction of the Ni-doped WO3. It shows that heteroatom doping and the three-dimensional (3D) nanosheet arrays morphology both facilitate to reduce the interfacial transfer resistance and increase electrochemical-active surface areas, which effectively improve electrocatalytic hydrogen evolution reaction (HER) activity. The optimized catalyst, 1% Ni-WP2 NS/CC, exhibits an outstanding electrocatalytic performance with an overpotential of 110 mV at 10 mA cm−2 and a Tafel slope of 65 mV dec−1 in the acid solution. DFT calculations further demonstrate the nickel doping can adjust the intrinsic structure of electronics, lower the Gibbs free energy of adsorption of hydrogen (ΔGH*), and effectively improve the HER performance." @default.
- W3089383973 created "2020-10-08" @default.
- W3089383973 creator A5003490164 @default.
- W3089383973 creator A5005291928 @default.
- W3089383973 creator A5009788730 @default.
- W3089383973 creator A5047932356 @default.
- W3089383973 creator A5063493852 @default.
- W3089383973 creator A5063500802 @default.
- W3089383973 creator A5068916530 @default.
- W3089383973 creator A5071037763 @default.
- W3089383973 date "2021-04-01" @default.
- W3089383973 modified "2023-10-18" @default.
- W3089383973 title "Tuning electronic configuration of WP2 nanosheet arrays via nickel doping for high-efficiency hydrogen evolution reaction" @default.
- W3089383973 cites W1983657635 @default.
- W3089383973 cites W2022714449 @default.
- W3089383973 cites W2039654250 @default.
- W3089383973 cites W2137693261 @default.
- W3089383973 cites W2230177155 @default.
- W3089383973 cites W2272441223 @default.
- W3089383973 cites W2324181796 @default.
- W3089383973 cites W2516747475 @default.
- W3089383973 cites W2518404336 @default.
- W3089383973 cites W2554147115 @default.
- W3089383973 cites W2727073747 @default.
- W3089383973 cites W2765938741 @default.
- W3089383973 cites W2778992342 @default.
- W3089383973 cites W2788762414 @default.
- W3089383973 cites W2795226894 @default.
- W3089383973 cites W2801619455 @default.
- W3089383973 cites W2803420381 @default.
- W3089383973 cites W2803717557 @default.
- W3089383973 cites W2804833861 @default.
- W3089383973 cites W2807204483 @default.
- W3089383973 cites W2883090580 @default.
- W3089383973 cites W2901726253 @default.
- W3089383973 cites W2909790116 @default.
- W3089383973 cites W2911340130 @default.
- W3089383973 cites W2913244141 @default.
- W3089383973 cites W2913264343 @default.
- W3089383973 cites W2914785248 @default.
- W3089383973 cites W2914970090 @default.
- W3089383973 cites W2915998767 @default.
- W3089383973 cites W2916738214 @default.
- W3089383973 cites W2917589403 @default.
- W3089383973 cites W2923783249 @default.
- W3089383973 cites W2927562676 @default.
- W3089383973 cites W2929386906 @default.
- W3089383973 cites W2934818502 @default.
- W3089383973 cites W2944627852 @default.
- W3089383973 cites W2945994085 @default.
- W3089383973 cites W2948349063 @default.
- W3089383973 cites W2953308650 @default.
- W3089383973 cites W2968357689 @default.
- W3089383973 cites W2969903368 @default.
- W3089383973 cites W2972289746 @default.
- W3089383973 cites W2973288068 @default.
- W3089383973 cites W2995608033 @default.
- W3089383973 cites W3007689029 @default.
- W3089383973 cites W3008355886 @default.
- W3089383973 cites W3011957935 @default.
- W3089383973 cites W3105982350 @default.
- W3089383973 cites W4245897087 @default.
- W3089383973 doi "https://doi.org/10.1016/j.jechem.2020.06.068" @default.
- W3089383973 hasPublicationYear "2021" @default.
- W3089383973 type Work @default.
- W3089383973 sameAs 3089383973 @default.
- W3089383973 citedByCount "44" @default.
- W3089383973 countsByYear W30893839732021 @default.
- W3089383973 countsByYear W30893839732022 @default.
- W3089383973 countsByYear W30893839732023 @default.
- W3089383973 crossrefType "journal-article" @default.
- W3089383973 hasAuthorship W3089383973A5003490164 @default.
- W3089383973 hasAuthorship W3089383973A5005291928 @default.
- W3089383973 hasAuthorship W3089383973A5009788730 @default.
- W3089383973 hasAuthorship W3089383973A5047932356 @default.
- W3089383973 hasAuthorship W3089383973A5063493852 @default.
- W3089383973 hasAuthorship W3089383973A5063500802 @default.
- W3089383973 hasAuthorship W3089383973A5068916530 @default.
- W3089383973 hasAuthorship W3089383973A5071037763 @default.
- W3089383973 hasConcept C127413603 @default.
- W3089383973 hasConcept C147789679 @default.
- W3089383973 hasConcept C153465999 @default.
- W3089383973 hasConcept C161790260 @default.
- W3089383973 hasConcept C171250308 @default.
- W3089383973 hasConcept C172404476 @default.
- W3089383973 hasConcept C17525397 @default.
- W3089383973 hasConcept C178790620 @default.
- W3089383973 hasConcept C179104552 @default.
- W3089383973 hasConcept C185592680 @default.
- W3089383973 hasConcept C186460083 @default.
- W3089383973 hasConcept C191897082 @default.
- W3089383973 hasConcept C192562407 @default.
- W3089383973 hasConcept C20950531 @default.
- W3089383973 hasConcept C2780378348 @default.
- W3089383973 hasConcept C2781281706 @default.
- W3089383973 hasConcept C35590869 @default.
- W3089383973 hasConcept C42360764 @default.
- W3089383973 hasConcept C504270822 @default.