Issue 6, 2021

Ternary NiTiO3@g-C3N4–Au nanofibers with a synergistic Z-scheme core@shell interface and dispersive Schottky contact surface for enhanced solar photocatalytic activity

Abstract

Z-scheme narrow bandgap heterojunctions can efficiently absorb solar light and provide high reduction and oxidation ability for photocatalysis. However, it is difficult to tune the Z-scheme interface charge transfer to achieve high charge separation. Here, we introduced a Schottky contact surface to promote Z-scheme interface charge separation. Thin g-C3N4 nanolayers of 50–60 nm were evenly grown on NiTiO3 nanofibers forming a Z-scheme core@shell interface, and Au nanoparticles of ∼10 nm were dispersed in the g-C3N4 nanolayer developing an additional Schottky contact surface. The Z-scheme core@shell interface and dispersive Schottky contact surface could generate a uniform radial electric field, providing continuous charge transfer channels. Photocurrent and photoluminescence confirmed the improved charge separation in the NiTiO3@g-C3N4–Au nanofibers. The ternary photocatalysts had enhanced photocatalytic activities under simulated solar light. Their hydrogen evolution rate was 212.50 μmol g−1 h−1, which was 4.22, 2.81 and 4.85 times higher than that of binary NiTiO3@g-C3N4 nanofibers, g-C3N4–Au and g-C3N4. For water treatment, their first-order rate constant of Rhodamine B oxidation was 0.033 min−1, which was 3.73, 3.83, 4.95 and 21.5 times higher than that of binary NiTiO3@g-C3N4 nanofibers, g-C3N4–Au, g-C3N4, and NiTiO3 nanofibers. The ternary photocatalysts also had relatively stable activity at various pH values, good separability, and recyclability. This work presents new insight into designing ternary photocatalysts with a synergistic interface and surface for photocatalysis.

Graphical abstract: Ternary NiTiO3@g-C3N4–Au nanofibers with a synergistic Z-scheme core@shell interface and dispersive Schottky contact surface for enhanced solar photocatalytic activity

Supplementary files

Article information

Article type
Research Article
Submitted
25 Nov 2020
Accepted
25 Jan 2021
First published
26 Jan 2021

Mater. Chem. Front., 2021,5, 2730-2741

Ternary NiTiO3@g-C3N4–Au nanofibers with a synergistic Z-scheme core@shell interface and dispersive Schottky contact surface for enhanced solar photocatalytic activity

J. Liu, X. Li, C. Han, X. Zhou, X. Li, Y. Liang, S. Liu, C. Shao and Y. Liu, Mater. Chem. Front., 2021, 5, 2730 DOI: 10.1039/D0QM00954G

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