Fabrication of 3D Bi2O3-BiOI heterojunction by a simple dipping method: Highly enhanced visible-light photoelectrocatalytic activity

2017 
Abstract Three-dimensional (3D) Bi 2 O 3 -BiOI heterojunction was fabricated on the basis of Bi 2 O 3 film by a simple dipping method at room temperature. The as-prepared film samples were characterized by scanning electron microscope (SEM), high resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and UV–Vis DRS spectra. Results indicated that BiOI nanosheets with cross-flake arrays were formed via in situ etching and exchanging of Bi 2 O 3 layer by I − in KI aqueous solution, which grow around the residual Bi 2 O 3 particles to form 3D Bi 2 O 3 -BiOI heterojunction. Liner sweep voltammetry (LSV), electrochemical impedance spectroscopy (EIS) Nyquist plots and incident monochromatic photon-to-current conversion efficiency (IPCE) indicated that easier generation, separation and transfer of photogenerated charges were achieved on the special 3D heterojunction. The photocurrent density of the 3D Bi 2 O 3 -BiOI composite increased by 8.4 times relative to pure Bi 2 O 3 at 0.35 V vs. Ag/AgCl in 0.2 M Na 2 SO 4 aqueous solution under visible light irradiation. For the PEC degradation of phenol, the composite film also exhibited greatly enhanced activity. The calculated rate constant was 3.8 times that on pure Bi 2 O 3 . Furthermore, good stability in long-time photocurrent and cyclic degradation of phenol can both be observed, indicating that the 3D Bi 2 O 3 -BiOI film can be potentially applied in water oxidation and environmental remediation.
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