Novel p–n junction UiO-66/BiOI photocatalysts with efficient visible-light-induced photocatalytic activity

Author:

Li Yuejin1,Shang Xili1,Li Changhai2,Huang Xiaoming3,Zheng Jingjing1

Affiliation:

1. College of Chemistry & Chemical Engineering, Binzhou University, Binzhou 256603, China

2. Engineering Research Center for Wastewater Resource of Shandong Province, Binzhou 256603, China

3. Mechatronics Engineering Department, Binzhou University, Binzhou 256603, China

Abstract

Abstract Novel visible-light-induced UiO-66/BiOI photocatalysts with a p–n junction structure have been prepared for the first time through a facile hydrothermal method. The prepared photocatalysts were characterized using the powder X-ray diffraction, high resolution transmission electron microscopy, scanning electron microscopy, UV–visible diffuse reflectance spectra, and N2 adsorption–desorption (Brunauer–Emmett–Teller) techniques respectively. The photodegradation performances of UiO-66/BiOI photocatalysts were evaluated by photodegrading salicylic acid under visible-light irradiation. The UiO-66/BiOI composites displayed much higher photocatalytic efficiencies than pure BiOI under visible light. When the content of UiO-66 was 5.2 wt%, the composite (UiO-66/BiOI-2) has the best photocatalytic activity. Most of the salicylic acid molecules can be degraded in 100 min. The degradation rate of UiO-66/BiOI-2 samples is higher than single BiOI and UiO-66. The enhanced photocatalytic performance of UiO-66/BiOI may be ascribed to the formation of p–n heterojunctions between BiOI and UiO-66, which facilitates the transfer and separation of the photogenerated charge carriers. After recycling of the photocatalyst for five times for the photodegradation of salicylic acid, more than 85% of salicylic acid could still be degraded in the fifth cycle, implying that the as-prepared photocatalysts are highly stable.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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