Matches in SemOpenAlex for { <https://semopenalex.org/work/W3201722521> ?p ?o ?g. }
- W3201722521 endingPage "162209" @default.
- W3201722521 startingPage "162209" @default.
- W3201722521 abstract "It was an effective strategy to improve photocatalytic degradation performance by constructing step-scheme (S-scheme) heterojunction photocatalysts with superior photo-redox capacity and high charge transfer efficiency. In this study, two-dimensional/two-dimensional (2D/2D) S-scheme g-C3N4/ZnIn2S4 (CN/ZIS) heterojunction with different mass ratios were synthesized by the hydrothermal method. Transmission electron microscopy (TEM) analysis showed that ZnIn2S4 nanosheets with an average size of ~20 nm were coupled on the surface of ultra-thin graphitic carbon nitrogen (g-C3N4) nanosheets, which can effectively increase the contact area. UV–vis diffuse reflectance spectra (DRS), Photoluminescence spectra (PL) and photochemical tests showed that CN/ZIS had strong visible light absorption ability and photo-generated carriers transfer ability. Under visible light irradiation, CN/ZIS-10 degraded 93.41% of tetracycline (TC), which was 1.38 times than that of pristine g-C3N4. Moreover, the photocatalytic activity of CN/ZIS-10 was almost no change after five cycles. The S-scheme mechanism of CN/ZIS-10 was explored through electron spin response (ESR) and capture experiments of active species. In conclusion, this work provided a reasonable example for the construction of g-C3N4-based S-scheme heterojunction." @default.
- W3201722521 created "2021-10-11" @default.
- W3201722521 creator A5005311274 @default.
- W3201722521 creator A5021515289 @default.
- W3201722521 creator A5023217134 @default.
- W3201722521 creator A5030023057 @default.
- W3201722521 creator A5036009400 @default.
- W3201722521 creator A5057814323 @default.
- W3201722521 creator A5064673863 @default.
- W3201722521 creator A5086664647 @default.
- W3201722521 creator A5091068751 @default.
- W3201722521 date "2022-02-01" @default.
- W3201722521 modified "2023-10-17" @default.
- W3201722521 title "Boosting interfacial charge separation and photocatalytic activity of 2D/2D g-C3N4/ZnIn2S4 S-scheme heterojunction under visible light irradiation" @default.
- W3201722521 cites W2012579236 @default.
- W3201722521 cites W2042966663 @default.
- W3201722521 cites W2134303903 @default.
- W3201722521 cites W2265144347 @default.
- W3201722521 cites W2749287738 @default.
- W3201722521 cites W2790205146 @default.
- W3201722521 cites W2792341438 @default.
- W3201722521 cites W2795959952 @default.
- W3201722521 cites W2884167468 @default.
- W3201722521 cites W2891510080 @default.
- W3201722521 cites W2892517330 @default.
- W3201722521 cites W2909331310 @default.
- W3201722521 cites W2925127346 @default.
- W3201722521 cites W2944830538 @default.
- W3201722521 cites W2945180471 @default.
- W3201722521 cites W2945625174 @default.
- W3201722521 cites W2949200886 @default.
- W3201722521 cites W2951200340 @default.
- W3201722521 cites W2953544815 @default.
- W3201722521 cites W2960420578 @default.
- W3201722521 cites W2973107840 @default.
- W3201722521 cites W2990950995 @default.
- W3201722521 cites W2991129536 @default.
- W3201722521 cites W2993222990 @default.
- W3201722521 cites W2996054568 @default.
- W3201722521 cites W2999998096 @default.
- W3201722521 cites W3006592661 @default.
- W3201722521 cites W3010510295 @default.
- W3201722521 cites W3010891217 @default.
- W3201722521 cites W3012290127 @default.
- W3201722521 cites W3015357340 @default.
- W3201722521 cites W3020591406 @default.
- W3201722521 cites W3021268078 @default.
- W3201722521 cites W3037259832 @default.
- W3201722521 cites W3045450204 @default.
- W3201722521 cites W3049664393 @default.
- W3201722521 cites W3049747355 @default.
- W3201722521 cites W3080996856 @default.
- W3201722521 cites W3082221893 @default.
- W3201722521 cites W3082907051 @default.
- W3201722521 cites W3085579283 @default.
- W3201722521 cites W3087119437 @default.
- W3201722521 cites W3092302954 @default.
- W3201722521 cites W3094024123 @default.
- W3201722521 cites W3097383536 @default.
- W3201722521 cites W3097873827 @default.
- W3201722521 cites W3123139234 @default.
- W3201722521 cites W3125788736 @default.
- W3201722521 cites W3127127615 @default.
- W3201722521 cites W3128254126 @default.
- W3201722521 cites W3133130315 @default.
- W3201722521 cites W3139410106 @default.
- W3201722521 cites W3144488715 @default.
- W3201722521 cites W3146385838 @default.
- W3201722521 cites W3150350456 @default.
- W3201722521 cites W3150357351 @default.
- W3201722521 cites W3158812271 @default.
- W3201722521 cites W3158895223 @default.
- W3201722521 cites W3164200141 @default.
- W3201722521 cites W3164212323 @default.
- W3201722521 cites W3165616874 @default.
- W3201722521 cites W3167613067 @default.
- W3201722521 cites W3169556172 @default.
- W3201722521 cites W3173985301 @default.
- W3201722521 cites W3177245053 @default.
- W3201722521 cites W3189359231 @default.
- W3201722521 cites W3190915809 @default.
- W3201722521 cites W4242180168 @default.
- W3201722521 doi "https://doi.org/10.1016/j.jallcom.2021.162209" @default.
- W3201722521 hasPublicationYear "2022" @default.
- W3201722521 type Work @default.
- W3201722521 sameAs 3201722521 @default.
- W3201722521 citedByCount "89" @default.
- W3201722521 countsByYear W32017225212022 @default.
- W3201722521 countsByYear W32017225212023 @default.
- W3201722521 crossrefType "journal-article" @default.
- W3201722521 hasAuthorship W3201722521A5005311274 @default.
- W3201722521 hasAuthorship W3201722521A5021515289 @default.
- W3201722521 hasAuthorship W3201722521A5023217134 @default.
- W3201722521 hasAuthorship W3201722521A5030023057 @default.
- W3201722521 hasAuthorship W3201722521A5036009400 @default.
- W3201722521 hasAuthorship W3201722521A5057814323 @default.
- W3201722521 hasAuthorship W3201722521A5064673863 @default.
- W3201722521 hasAuthorship W3201722521A5086664647 @default.