Carbon defective g-C3N4 thin-wall tubes for drastic improvement of photocatalytic H2 production
Author:
Publisher
Elsevier BV
Subject
General Chemistry,General Materials Science
Reference58 articles.
1. Emerging polymeric carbon nitride Z-scheme systems for photocatalysis;Liao;Cell Rep. Phys. Sci.,2021
2. Boosting H2 production over C60-mediated NH2-MIL-125(Ti)/Zn0.5Cd0.5S S-scheme heterojunction via enhanced interfacial carrier separation;Li;Small,2021
3. Interior and surface synergistic modifications modulate the SnNb2O6/Ni-doped ZnIn2S4 S-scheme heterojunction for efficient photocatalytic H2 evolution;Li;Inorg. Chem.,2022
4. Z-scheme systems: from fundamental principles to characterization, synthesis, and photocatalytic fuel-conversion applications;Liao;Phys. Rep.,2022
5. A [001]-Oriented Hittorf's phosphorus nanorods/polymeric carbon nitride Heterostructure for boosting wide-spectrum-responsive photocatalytic hydrogen evolution from pure water;Zhu;Angew. Chem. Int. Ed.,2020
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