Matches in SemOpenAlex for { <https://semopenalex.org/work/W2897054158> ?p ?o ?g. }
- W2897054158 endingPage "835" @default.
- W2897054158 startingPage "835" @default.
- W2897054158 abstract "Photocatalysis is a green technique that can convert solar energy to chemical energy, especially in H2 production from water splitting. In this study, ZnO and red phosphorus (ZnO/RP) heterostructures were fabricated through a facile calcination method for the first time, which showed the considerable photocatalytic activity of H2 evolution. The photocatalytic activities of heterostructures with different ratios of RP have been investigated in detail. Compared to bare ZnO, ZnO/RP heterostructures exhibit a 20.8-fold enhancement for H2 production and furthermore overcome the photocorrosion issue of ZnO. The improved photocatalytic activities highly depend on the synergistic effect of the high migration efficiency of photo-induced electron–hole pairs with the inhibited charge carrier recombination on the surface. The presented strategy can also be applied to other semiconductors for various optoelectronics applications." @default.
- W2897054158 created "2018-10-26" @default.
- W2897054158 creator A5016604752 @default.
- W2897054158 creator A5050030880 @default.
- W2897054158 creator A5055140263 @default.
- W2897054158 creator A5065859286 @default.
- W2897054158 creator A5066871519 @default.
- W2897054158 creator A5071844040 @default.
- W2897054158 creator A5080496515 @default.
- W2897054158 creator A5090119319 @default.
- W2897054158 date "2018-10-15" @default.
- W2897054158 modified "2023-10-13" @default.
- W2897054158 title "Fabrication of ZnO/Red Phosphorus Heterostructure for Effective Photocatalytic H2 Evolution from Water Splitting" @default.
- W2897054158 cites W1554167324 @default.
- W2897054158 cites W1854025783 @default.
- W2897054158 cites W1978761857 @default.
- W2897054158 cites W1982086087 @default.
- W2897054158 cites W1985776665 @default.
- W2897054158 cites W1988695023 @default.
- W2897054158 cites W2002537922 @default.
- W2897054158 cites W2013737445 @default.
- W2897054158 cites W2028581192 @default.
- W2897054158 cites W2034290864 @default.
- W2897054158 cites W2036723649 @default.
- W2897054158 cites W2038509771 @default.
- W2897054158 cites W2041941858 @default.
- W2897054158 cites W2042492216 @default.
- W2897054158 cites W2046110845 @default.
- W2897054158 cites W2046825815 @default.
- W2897054158 cites W2049731660 @default.
- W2897054158 cites W2061292647 @default.
- W2897054158 cites W2063570835 @default.
- W2897054158 cites W2071118350 @default.
- W2897054158 cites W2087385375 @default.
- W2897054158 cites W2107244144 @default.
- W2897054158 cites W2113682803 @default.
- W2897054158 cites W2139040354 @default.
- W2897054158 cites W2146349866 @default.
- W2897054158 cites W2300695745 @default.
- W2897054158 cites W2328653605 @default.
- W2897054158 cites W2345441777 @default.
- W2897054158 cites W2347178261 @default.
- W2897054158 cites W2528439212 @default.
- W2897054158 cites W2559781199 @default.
- W2897054158 cites W2575624523 @default.
- W2897054158 cites W2593743439 @default.
- W2897054158 cites W2733338788 @default.
- W2897054158 cites W2735401585 @default.
- W2897054158 cites W2750600688 @default.
- W2897054158 cites W2754562427 @default.
- W2897054158 cites W2765976161 @default.
- W2897054158 cites W2885953610 @default.
- W2897054158 cites W2889078477 @default.
- W2897054158 cites W4211152862 @default.
- W2897054158 doi "https://doi.org/10.3390/nano8100835" @default.
- W2897054158 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/6215150" @default.
- W2897054158 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30326555" @default.
- W2897054158 hasPublicationYear "2018" @default.
- W2897054158 type Work @default.
- W2897054158 sameAs 2897054158 @default.
- W2897054158 citedByCount "24" @default.
- W2897054158 countsByYear W28970541582019 @default.
- W2897054158 countsByYear W28970541582020 @default.
- W2897054158 countsByYear W28970541582021 @default.
- W2897054158 countsByYear W28970541582022 @default.
- W2897054158 countsByYear W28970541582023 @default.
- W2897054158 crossrefType "journal-article" @default.
- W2897054158 hasAuthorship W2897054158A5016604752 @default.
- W2897054158 hasAuthorship W2897054158A5050030880 @default.
- W2897054158 hasAuthorship W2897054158A5055140263 @default.
- W2897054158 hasAuthorship W2897054158A5065859286 @default.
- W2897054158 hasAuthorship W2897054158A5066871519 @default.
- W2897054158 hasAuthorship W2897054158A5071844040 @default.
- W2897054158 hasAuthorship W2897054158A5080496515 @default.
- W2897054158 hasAuthorship W2897054158A5090119319 @default.
- W2897054158 hasBestOaLocation W28970541581 @default.
- W2897054158 hasConcept C104232198 @default.
- W2897054158 hasConcept C108225325 @default.
- W2897054158 hasConcept C127413603 @default.
- W2897054158 hasConcept C136525101 @default.
- W2897054158 hasConcept C142724271 @default.
- W2897054158 hasConcept C161790260 @default.
- W2897054158 hasConcept C171250308 @default.
- W2897054158 hasConcept C174125647 @default.
- W2897054158 hasConcept C185592680 @default.
- W2897054158 hasConcept C192562407 @default.
- W2897054158 hasConcept C204787440 @default.
- W2897054158 hasConcept C35590869 @default.
- W2897054158 hasConcept C42360764 @default.
- W2897054158 hasConcept C49040817 @default.
- W2897054158 hasConcept C55493867 @default.
- W2897054158 hasConcept C65165184 @default.
- W2897054158 hasConcept C7082614 @default.
- W2897054158 hasConcept C71924100 @default.
- W2897054158 hasConcept C79794668 @default.
- W2897054158 hasConceptScore W2897054158C104232198 @default.
- W2897054158 hasConceptScore W2897054158C108225325 @default.
- W2897054158 hasConceptScore W2897054158C127413603 @default.