Matches in SemOpenAlex for { <https://semopenalex.org/work/W3200907637> ?p ?o ?g. }
- W3200907637 endingPage "13123" @default.
- W3200907637 startingPage "13114" @default.
- W3200907637 abstract "Developing oxygen evolution reaction (OER) catalysts is intricate and challenging, involving a four-electron transport process coupled with conversion of O–H bonds into O–O bonds. This paper proposes a simple one-step synthetic strategy for preparing self-supported Cu2Se/NiSe2 heteronanostructure electrodes for the OER with well-defined heterointerfaces by directly embedding onto the conductive nickel foam substrate. The prepared catalyst significantly enhances OER activity with low overpotentials of 277 and 290 mV at current densities of 50 and 100 mA cm–2, respectively, which is attributed to electronic structure modulation by synergetic interactions and enhanced charge transportation between Cu2Se and NiSe2 nanostructures. The as-prepared electrodes achieved high durability in 1 M KOH, retaining initial activity levels after 24 h continuous operation. We performed comprehensive spectroscopic and microscopic characterization before and after the OER to clarify active species and relate them to OER catalysis. Enhanced catalyst efficiency arises from integrating multicomponent electrocatalytic systems, which has been emphasized by the present findings." @default.
- W3200907637 created "2021-09-27" @default.
- W3200907637 creator A5003527736 @default.
- W3200907637 creator A5005647960 @default.
- W3200907637 creator A5008390259 @default.
- W3200907637 creator A5027714356 @default.
- W3200907637 creator A5038308978 @default.
- W3200907637 creator A5048634677 @default.
- W3200907637 creator A5048912799 @default.
- W3200907637 creator A5068783162 @default.
- W3200907637 creator A5073318974 @default.
- W3200907637 creator A5091045835 @default.
- W3200907637 date "2021-09-13" @default.
- W3200907637 modified "2023-10-02" @default.
- W3200907637 title "Self-Supportive Bimetallic Selenide Heteronanostructures as High-Efficiency Electro(pre)catalysts for Water Oxidation" @default.
- W3200907637 cites W1963597613 @default.
- W3200907637 cites W1970996323 @default.
- W3200907637 cites W1973835130 @default.
- W3200907637 cites W1976204697 @default.
- W3200907637 cites W2004316221 @default.
- W3200907637 cites W2011504489 @default.
- W3200907637 cites W2020080291 @default.
- W3200907637 cites W2020214231 @default.
- W3200907637 cites W2021752987 @default.
- W3200907637 cites W2032533160 @default.
- W3200907637 cites W2057581826 @default.
- W3200907637 cites W2068749234 @default.
- W3200907637 cites W2076968595 @default.
- W3200907637 cites W2080970669 @default.
- W3200907637 cites W2098357930 @default.
- W3200907637 cites W2108953022 @default.
- W3200907637 cites W2124128778 @default.
- W3200907637 cites W2128693993 @default.
- W3200907637 cites W2151207643 @default.
- W3200907637 cites W2169510623 @default.
- W3200907637 cites W2170447056 @default.
- W3200907637 cites W2215728699 @default.
- W3200907637 cites W2287936852 @default.
- W3200907637 cites W2299572817 @default.
- W3200907637 cites W2313035794 @default.
- W3200907637 cites W2323340717 @default.
- W3200907637 cites W2333968877 @default.
- W3200907637 cites W2410039023 @default.
- W3200907637 cites W2507270644 @default.
- W3200907637 cites W2519927925 @default.
- W3200907637 cites W2573377826 @default.
- W3200907637 cites W2575823937 @default.
- W3200907637 cites W2576983657 @default.
- W3200907637 cites W2584450335 @default.
- W3200907637 cites W2587899046 @default.
- W3200907637 cites W2745645378 @default.
- W3200907637 cites W2783268275 @default.
- W3200907637 cites W2787901841 @default.
- W3200907637 cites W2801963306 @default.
- W3200907637 cites W2808974178 @default.
- W3200907637 cites W2883719975 @default.
- W3200907637 cites W2908249283 @default.
- W3200907637 cites W2923436226 @default.
- W3200907637 cites W2941262291 @default.
- W3200907637 cites W2954065095 @default.
- W3200907637 cites W2965255951 @default.
- W3200907637 cites W2970714678 @default.
- W3200907637 cites W2992334656 @default.
- W3200907637 cites W2995801050 @default.
- W3200907637 cites W3002190986 @default.
- W3200907637 cites W3006134004 @default.
- W3200907637 cites W3011901584 @default.
- W3200907637 cites W3021679623 @default.
- W3200907637 cites W3024302128 @default.
- W3200907637 cites W3035789098 @default.
- W3200907637 cites W3040142727 @default.
- W3200907637 cites W3047409191 @default.
- W3200907637 cites W3100250273 @default.
- W3200907637 cites W3138305217 @default.
- W3200907637 cites W3152733176 @default.
- W3200907637 cites W3157535718 @default.
- W3200907637 cites W3165705488 @default.
- W3200907637 cites W3167500348 @default.
- W3200907637 doi "https://doi.org/10.1021/acssuschemeng.1c05728" @default.
- W3200907637 hasPublicationYear "2021" @default.
- W3200907637 type Work @default.
- W3200907637 sameAs 3200907637 @default.
- W3200907637 citedByCount "11" @default.
- W3200907637 countsByYear W32009076372022 @default.
- W3200907637 countsByYear W32009076372023 @default.
- W3200907637 crossrefType "journal-article" @default.
- W3200907637 hasAuthorship W3200907637A5003527736 @default.
- W3200907637 hasAuthorship W3200907637A5005647960 @default.
- W3200907637 hasAuthorship W3200907637A5008390259 @default.
- W3200907637 hasAuthorship W3200907637A5027714356 @default.
- W3200907637 hasAuthorship W3200907637A5038308978 @default.
- W3200907637 hasAuthorship W3200907637A5048634677 @default.
- W3200907637 hasAuthorship W3200907637A5048912799 @default.
- W3200907637 hasAuthorship W3200907637A5068783162 @default.
- W3200907637 hasAuthorship W3200907637A5073318974 @default.
- W3200907637 hasAuthorship W3200907637A5091045835 @default.
- W3200907637 hasConcept C111368507 @default.
- W3200907637 hasConcept C127313418 @default.