Engineering of a hierarchical S-scheme 2D/3D heterojunction with graphdiyne (g-CnH2n−2) coated 3D porous CoAl2O4 nanoflowers for highly efficient photocatalytic H2 evolution
Xuqiang Hao,
Wei Deng,
Yu Fan
et al.
Abstract:Solar photocatalytic hydrolysis of hydrogen is one of the most important ways to solve energy and environmental problems. Rational design and modulation of interfaces in S-scheme heterojunctions still present significant...
“…Hydrogen fuel with its pollution-free and high-quality energy density is an important clean energy source. 1–6 Converting solar energy into hydrogen energy through semiconductor photocatalysts is one of the best methods for dealing with energy and environmental challenges. 7–10 In traditional photocatalytic hydrogen production processes, photo-generated electrons can reduce protons to generate hydrogen, while photo-generated holes are generally consumed by sacrificial agents.…”
GR and Ni2P dual cocatalysts modified ZnIn2S4 nanoflower has been prepared and they can simultaneously utilize photogenerated electrons and holes to actuate the oxidation of benzyl alcohol (BA) to benzaldehyde (BAD) integrated with H2 evolution.
“…Hydrogen fuel with its pollution-free and high-quality energy density is an important clean energy source. 1–6 Converting solar energy into hydrogen energy through semiconductor photocatalysts is one of the best methods for dealing with energy and environmental challenges. 7–10 In traditional photocatalytic hydrogen production processes, photo-generated electrons can reduce protons to generate hydrogen, while photo-generated holes are generally consumed by sacrificial agents.…”
GR and Ni2P dual cocatalysts modified ZnIn2S4 nanoflower has been prepared and they can simultaneously utilize photogenerated electrons and holes to actuate the oxidation of benzyl alcohol (BA) to benzaldehyde (BAD) integrated with H2 evolution.
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