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Surface-modified, dye-sensitized niobate nanosheets enabling an efficient solar-driven Z-scheme for overall water splitting.


ABSTRACT: While dye-sensitized metal oxides are good candidates as H2 evolution photocatalysts for solar-driven Z-scheme water splitting, their solar-to-hydrogen (STH) energy conversion efficiencies remain low because of uncontrolled charge recombination reactions. Here, we show that modification of Ru dye-sensitized, Pt-intercalated HCa2Nb3O10 nanosheets (Ru/Pt/HCa2Nb3O10) with both amorphous Al2O3 and poly(styrenesulfonate) (PSS) improves the STH efficiency of Z-scheme overall water splitting by a factor of ~100, when the nanosheets are used in combination with a WO3-based O2 evolution photocatalyst and an I3-/I- redox mediator, relative to an analogous system that uses unmodified Ru/Pt/HCa2Nb3O10. By using the optimized photocatalyst, PSS/Ru/Al2O3/Pt/HCa2Nb3O10, a maximum STH of 0.12% and an apparent quantum yield of 4.1% at 420 nm were obtained, by far the highest among dye-sensitized water splitting systems and comparable to conventional semiconductor-based suspended particulate photocatalyst systems.

SUBMITTER: Nishioka S 

PROVIDER: S-EPMC9365272 | biostudies-literature | 2022 Aug

REPOSITORIES: biostudies-literature

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Surface-modified, dye-sensitized niobate nanosheets enabling an efficient solar-driven Z-scheme for overall water splitting.

Nishioka Shunta S   Hojo Koya K   Xiao Langqiu L   Gao Tianyue T   Miseki Yugo Y   Yasuda Shuhei S   Yokoi Toshiyuki T   Sayama Kazuhiro K   Mallouk Thomas E TE   Maeda Kazuhiko K  

Science advances 20220810 32


While dye-sensitized metal oxides are good candidates as H<sub>2</sub> evolution photocatalysts for solar-driven Z-scheme water splitting, their solar-to-hydrogen (STH) energy conversion efficiencies remain low because of uncontrolled charge recombination reactions. Here, we show that modification of Ru dye-sensitized, Pt-intercalated HCa<sub>2</sub>Nb<sub>3</sub>O<sub>10</sub> nanosheets (<b>Ru</b>/Pt/HCa<sub>2</sub>Nb<sub>3</sub>O<sub>10</sub>) with both amorphous Al<sub>2</sub>O<sub>3</sub> a  ...[more]

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