Preparation and activity evaluation of p-n junction photocatalyst NiO/TiO2.

Chen Shifu, Zhang Sujuan, Liu Wei, Zhao Wei
Author Information
  1. Chen Shifu: Department of Chemistry, Huaibei Coal Normal College, Anhui, Huaibei 235000, People's Republic of China. chshifu@hbcnc.edu.cn

Abstract

p-n Junction photocatalyst NiO/TiO2 was prepared by sol-gel method using Ni(NO3)2.6H2O and tetrabutyl titanate [Ti(OC4H9)4] as the raw materials. The p-n junction photocatalyst NiO/TiO2 was characterized by UV-vis diffuse reflection spectrum, X-ray powder diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). The photocatalytic activity of the photocatalyst was evaluated by photocatalytic reduction of Cr2O7(2-) and photocatalytic oxidation of rhodamine B. The results show that, for photocatalytic reduction of Cr2O7(2-), the optimum percentage of doped-NiO is 0.5% (mole ratio of Ni/Ti). The photocatalytic activity of the p-n junction NiO/TiO2 is much higher than that of TiO2 on the photocatalytic reduction of Cr2O7(2-). However, the photocatalytic activity of the p-n junction photocatalyst NiO/TiO2 is much lower than that of TiO2 on the photocatalytic oxidation of rhodamine B. Namely, the p-n junction photocatalyst NiO/TiO2 has higher photocatalytic reduction activity, but lower photocatalytic oxidation activity. Effects of heat treatment on the photocatalytic activity of p-n junction photocatalyst NiO/TiO2 were investigated. The mechanisms of influence on the photocatalytic activity were also discussed by the p-n junction principle.

MeSH Term

Catalysis
Coloring Agents
Hot Temperature
Nickel
Oxidation-Reduction
Photochemistry
Potassium Dichromate
Rhodamines
Titanium
Ultraviolet Rays
Water Pollutants, Chemical

Chemicals

Coloring Agents
Rhodamines
Water Pollutants, Chemical
titanium dioxide
Nickel
nickel monoxide
Titanium
rhodamine B
Potassium Dichromate

Word Cloud

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