Fabrication of black NiO/Sr 2 FeTaO 6 heterojunctions with rapid interface charge transfer for efficient photocatalytic hydrogen evolution
Series of black NiO/Sr FeTaO (NiO/SFT) composites were synthesized by the combined processes of hydrothermal method and calcination treatment. The formed NiO was deposited on the surface of Sr FeTaO to form a closely interfacial contact, leading to the formation of NiO/Sr FeTaO heterojunction. The r...
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Veröffentlicht in: | Frontiers in chemistry 2022, Vol.10, p.1118540 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Series of black NiO/Sr
FeTaO
(NiO/SFT) composites were synthesized by the combined processes of hydrothermal method and calcination treatment. The formed NiO was deposited on the surface of Sr
FeTaO
to form a closely interfacial contact, leading to the formation of NiO/Sr
FeTaO
heterojunction. The resulted samples were fully characterized by XRD, TEM, XPS, and UV-Vis DRS to gain their microstructure, crystal phase, atomic states and optical absorption properties. Introducing narrow-bandgap semiconductor of black NiO in NiO/Sr
FeTaO
heterojunctions exhibits two major advantages. On the one hand, coupling with black NiO can significantly increase the light harvesting capacity of Sr
FeTaO
. On the other hand, the formed NiO/Sr
FeTaO
heterojunctions benefited the separation and transfer of photogenerated charge carriers, which was confirmed by photo-electrochemical measurement, PL and TR-PL spectra. The activity of as-prepared samples was evaluated by photocatalytic hydrogen (H
) evolution (PHE) under visible light irradiation. The resulted NiO/SFT composites showed the improved PHE efficiency than that of NiO and Sr
FeTaO
, owing to the synergistic effects of synergistic effects of heterojunction formation for the efficient charge carrier transfer/separation and increased light harvesting capacity. However, the excess amount of NiO loaded in NiO/SFT composites will restrain the light harvesting of Sr
FeTaO
component and decrease, leading to the decreased PHE activity. Our work provided an insight on the construction of high-efficiency heterojunction photocatalysts for PHE reaction. |
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ISSN: | 2296-2646 2296-2646 |
DOI: | 10.3389/fchem.2022.1118540 |