4.7 Article

Controlled synthesis of high-performance silver/silver orthophosphate (Ag/Ag3PO4) interfaced photoanode with porous tetrahedrons layer for photoelectrochemical water splitting

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Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jece.2022.107161

Keywords

Photoelectrocatalytic; Water splitting; Silver orthophosphate; Photoelectrode; Green hydrogen

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A novel Ag/Ag3PO4 interfaced photoanode was successfully synthesized by controlling the oxidation of Ag foil. The photoanode has a top porous layer of {111} facets-bounded Ag3PO4 tetrahedrons layer. The optimized Ag/Ag3PO4 interfaced photoanode achieved an unprecedentedly high photocurrent density of 4.19 mA/cm(2) at 1 V vs Ag/AgCl with an accompanying measured H-2 evolution rate of 49.08 mu mol/h cm(2).
In this study, a novel interfaced photoanode of silver/silver orthophosphate (Ag/Ag3PO4) was synthesised via the controlled oxidation of Ag foil which resulted in a top porous layer of {111} facets-bounded Ag3PO4 tetrahedrons layer. This was achieved through a systematic understanding and optimisation of the critical synthesis parameters, including: concentration ratio of polyvinylpyrrolidone (PVP) used as the capping agent to precursor (C/P), volume ratio of hydrogen peroxide (H2O2) to deionised water (H2O) (H2O2:H2O) and reaction time. It was revealed that the best-performing Ag/Ag3PO4 interfaced photoanode can be synthesised at the C/P ratio of 4, H2O2:H2O ratio of 3:5 and reaction time of 20 h. This is owing to the synergistic reaction of Ag foil, NaH2PO4 and H2O2 under the assistance of PVP, which leads to the formation of the porous layer of highly reactive {111} facets-bounded Ag3PO4 tetrahedron structures. The optimised Ag/Ag3PO4 interfaced photoanode achieved an unprecedentedly high photocurrent density of 4.19 mA/cm(2) at 1 V vs Ag/AgCl with an accompanying measured H-2 evolution rate of 49.08 mu mol/h cm(2). Additionally, the applied bias photon-to-current efficiency (ABPE) and incident photon-to-current efficiency (IPCE) for the Ag/Ag3PO4 interfaced photoanode were recorded at 0.55% (0.84 V vs Ag/AgCl) and 56.5% (1 V vs Ag/AgCl, 410 nm), respectively.

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