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- W4224216036 endingPage "153281" @default.
- W4224216036 startingPage "153281" @default.
- W4224216036 abstract "Photocatalytic water and seawater splitting into H2 is a promising strategy to attract the attention of researchers due to unique advantages including environment-friendly, cost-effectiveness and strong applicability. In this work, the high-crystalline/amorphous g-C3N4 (HCCN/ACN) S-scheme homojunctions are fabricated by solvothermal method and applied in photocatalytic H2 production no matter in water or seawater environments. The results of characterizations and experiments confirm that HCCN/ACN-6:4 S-scheme homojunction possesses optimal photocatalytic H2 evolution rate in water (5.534 mmol h−1 g−1) and seawater (3.147 mmol h−1 g−1) respectively, which is ascribed to the following reasons: (i) the accelerated interface charge transfer in distinctive S-scheme homojunction could produce more active groups to participate in photocatalytic reaction; (ii) the improved specific surface area in HCCN/ACN-6:4 can provide more active sites on the surface to promote photocatalytic H2 production; (iii) enhanced hydrophilic in HCCN with abundant photo-reaction reduced sites is beneficial to photocatalytic H2 evolution reaction between electrons and water molecules. This work provides a novel prospect for designing S-scheme homojunction photocatalyst with outstanding photocatalytic performance." @default.
- W4224216036 created "2022-04-26" @default.
- W4224216036 creator A5071365309 @default.
- W4224216036 creator A5076049860 @default.
- W4224216036 creator A5085698884 @default.
- W4224216036 creator A5086599379 @default.
- W4224216036 date "2022-08-01" @default.
- W4224216036 modified "2023-10-11" @default.
- W4224216036 title "High-crystalline/amorphous g-C3N4 S-scheme homojunction for boosted photocatalytic H2 production in water/simulated seawater: Interfacial charge transfer and mechanism insight" @default.
- W4224216036 cites W2022945677 @default.
- W4224216036 cites W2066797963 @default.
- W4224216036 cites W2322473062 @default.
- W4224216036 cites W2410875358 @default.
- W4224216036 cites W2747180765 @default.
- W4224216036 cites W2752326198 @default.
- W4224216036 cites W2754400977 @default.
- W4224216036 cites W2769514617 @default.
- W4224216036 cites W2782678818 @default.
- W4224216036 cites W2786436922 @default.
- W4224216036 cites W2791554866 @default.
- W4224216036 cites W2791739812 @default.
- W4224216036 cites W2792110135 @default.
- W4224216036 cites W2883524391 @default.
- W4224216036 cites W2896505492 @default.
- W4224216036 cites W2900072317 @default.
- W4224216036 cites W2906334951 @default.
- W4224216036 cites W2941941954 @default.
- W4224216036 cites W2945974256 @default.
- W4224216036 cites W2954895330 @default.
- W4224216036 cites W2975437949 @default.
- W4224216036 cites W2986381507 @default.
- W4224216036 cites W2989571515 @default.
- W4224216036 cites W2996008097 @default.
- W4224216036 cites W2996423441 @default.
- W4224216036 cites W2997069608 @default.
- W4224216036 cites W2997567017 @default.
- W4224216036 cites W2998979930 @default.
- W4224216036 cites W2999998096 @default.
- W4224216036 cites W3002096128 @default.
- W4224216036 cites W3009129311 @default.
- W4224216036 cites W3010378686 @default.
- W4224216036 cites W3011815368 @default.
- W4224216036 cites W3015004482 @default.
- W4224216036 cites W3015261217 @default.
- W4224216036 cites W3017143397 @default.
- W4224216036 cites W3020136043 @default.
- W4224216036 cites W3026108724 @default.
- W4224216036 cites W3034770520 @default.
- W4224216036 cites W3037077157 @default.
- W4224216036 cites W3037259832 @default.
- W4224216036 cites W3046059601 @default.
- W4224216036 cites W3047624761 @default.
- W4224216036 cites W3073470552 @default.
- W4224216036 cites W3080797339 @default.
- W4224216036 cites W3082663455 @default.
- W4224216036 cites W3082868896 @default.
- W4224216036 cites W3093665015 @default.
- W4224216036 cites W3098459683 @default.
- W4224216036 cites W3112853803 @default.
- W4224216036 cites W3115561229 @default.
- W4224216036 cites W3128440723 @default.
- W4224216036 cites W3130224878 @default.
- W4224216036 cites W3131366513 @default.
- W4224216036 cites W3137295689 @default.
- W4224216036 cites W3160113887 @default.
- W4224216036 cites W3166850252 @default.
- W4224216036 cites W3168325551 @default.
- W4224216036 cites W3172063618 @default.
- W4224216036 cites W3172721743 @default.
- W4224216036 cites W3173261744 @default.
- W4224216036 cites W3177097086 @default.
- W4224216036 cites W3177790532 @default.
- W4224216036 cites W3181843002 @default.
- W4224216036 cites W3185833371 @default.
- W4224216036 cites W3186698981 @default.
- W4224216036 cites W3198918421 @default.
- W4224216036 cites W3199437452 @default.
- W4224216036 cites W3200747286 @default.
- W4224216036 cites W3203301861 @default.
- W4224216036 cites W3204333431 @default.
- W4224216036 cites W3206227784 @default.
- W4224216036 cites W3207084205 @default.
- W4224216036 cites W3209879154 @default.
- W4224216036 cites W3210593693 @default.
- W4224216036 cites W3211654553 @default.
- W4224216036 cites W3212366183 @default.
- W4224216036 cites W3213636887 @default.
- W4224216036 cites W3215600071 @default.
- W4224216036 cites W4200047037 @default.
- W4224216036 cites W4200494982 @default.
- W4224216036 cites W4210529912 @default.
- W4224216036 cites W4210648026 @default.
- W4224216036 cites W4213014082 @default.
- W4224216036 cites W4223988121 @default.
- W4224216036 cites W4224904038 @default.
- W4224216036 doi "https://doi.org/10.1016/j.apsusc.2022.153281" @default.
- W4224216036 hasPublicationYear "2022" @default.
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