Abstract
Doping, co-catalyst, and Z-scheme configuration are three potential approaches to enhance the photocatalytic activity of metal oxides. Herein, a Cu doped ZnO/Cu/g-C3N4heterostructure is prepared using the calcination-hydrothermal method. The successful fabrication is confirmed using different analytical techniques. XRD and XPS analyses reveal the presence of Cu in two chemical states, Cu2+and Cu0. Cu plays three roles in the Cu doped ZnO/Cu/g-C3N4photocatalyst, as a dopant reducing the bandgap of ZnO, as an electron mediator facilitating the Z-scheme charge transport pathway, and as a co-catalyst enhancing the catalytic activity. Therefore, the Cu doped ZnO/Cu/g-C3N4heterostructure exhibits higher photocatalytic activity than the single and binary photocatalysts. The optimized heterostructure degrades 99% of RhB and 98% of MB after 60 and 20 min respectively sunlight irradiation. Scavenger and photoluminescence experiments are used to investigate the charge separation, Z-scheme configuration, and main active species. LC-MS is employed to explore the Rh B pathway degradation. This work opens a new pathway for the investigation of the multiple roles of nonnoble metals in enhancing the photocatalytic activity.
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CITATION STYLE
Bajiri, M. A., Hezam, A., Namratha, K., Al-Maswari, B. M., Bhojya Naik, H. S., Byrappa, K., … Alasmari, R. (2021). Non-noble metallic Cu with three different roles in a Cu doped ZnO/Cu/g-C3N4heterostructure for enhanced Z-scheme photocatalytic activity. New Journal of Chemistry, 45(30), 13499–13511. https://doi.org/10.1039/d1nj01044a
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