Controllable Fabrication of Cu:Bivo4 Nanostructures Via a Two-Step Electrodeposition Strategy for Efficient Photoelectrochemical Water Splitting

Journal of Alloys and Compounds(2024)

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摘要
A facile and reliable two-step electrodeposition method was successfully developed to construct and regulate copper incorporated BiVO4 (Cu:BiVO4) nanostructures with controllable surface morphologies and compositions for efficient photoelectrochemical water splitting. Cu:BiVO4 nanofibers and nanonets were obtained after annealing the Cu nanoparticles electrodeposited BiOI nanosheets (Cu:BiOI) with the controlled radial immersion of vanadium precursor solution. The morphology and composition of Cu:BiVO4 nanostructures can be effectively regulated by adjusting the concentration of Cu nanoparticles, which served as the heteroatom precursor and contributed to steric hindrance. A suitable doping concentration of Cu in Cu:BiVO4 resulted in enhanced electronic conductivity and created nanostructures with large surface area and abundant catalytic active sites for improved charge transfer dynamics. As a result, photoelectrochemical properties of Cu:BiVO4-150s photoanode with nanofibers and nanoparticles were improved significantly, realizing a 2.6-fold photocurrent density of 1.7mAcm−2 at 1.23V vs. RHE compared to bare BiVO4 under AM 1.5G simulated solar irradiation. However, Cu:BiVO4 nanonets with more interlaced nanostructure showed a decreased photocurrent density, which could be attributed to the introduction of more recombination centers. This simple yet general approach of morphology and composition control offers a beneficial guidance to develop doped semiconductors with controlled nanostructures for excellent water splitting performance.
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Photoelectrochemical,Electrodeposition,Cu doping,Bismuth Vanadate,Nanofibers
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