Liu Guoshuai, You Shijie, Huang Hong, Ma Ming, Ren Nanqi
State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, PR China.
State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, PR China.
Chemosphere. 2017 Mar;171:702-709. doi: 10.1016/j.chemosphere.2016.12.102. Epub 2016 Dec 23.
Photocatalysis has been gaining a growing popularity in water treatment, and their engineered applications inspire the development of effective photocatalyst materials. To develop photocatalyst that is effective for degradation of organic pollutants, we fabricate a novel direct solid Z-scheme BiPO-BiO(OH)(NO) (BPO-BHN) heterojunction structured hybrid. The results demonstrate an enhanced photocatalytic activity of BPO-BHN to produce OH radicals, according to diffuse reflectance spectroscopy (DRS), electron spin-resonance resonance (ESR), photoelectrochemical measurements, and theoretical calculation results. The BPO-BHN is shown to greatly promote the degradation of 2,4-dichlorophenol (2,4-DCP) under ultraviolet light. On the basis of pseudo-first-order kinetics, the apparent degradation rate constant (k) of 0.050 min obtained for BPO-BHN is approximately 3.33 and 12.5 times of that for individual BPO (k = 0.015 min) and BHN (k = 0.004 min), respectively. This suggests a virtually synergistic photocatalysis of BPO and BHN when they form a direct solid Z-scheme heterojunction structure, which is favorable for improving UV-light harvesting, hole/electron separation and oxidizing capability. In particular, as a novel non-linear optical (NLO) material, the BHN plays a significant role in the formation of Z-scheme structure for its unique ability of capturing photo-electrons from BPO by high-potential C face in valence band. This study provides a proof-of-concept strategy to develop more effective photocatalysts for degradation of organic pollutants in water.
光催化在水处理领域越来越受到关注,其工程应用推动了高效光催化材料的发展。为了开发对有机污染物降解有效的光催化剂,我们制备了一种新型的直接固态Z型BiPO-BiO(OH)(NO)(BPO-BHN)异质结结构复合材料。根据漫反射光谱(DRS)、电子自旋共振(ESR)、光电化学测量和理论计算结果,结果表明BPO-BHN产生羟基自由基的光催化活性增强。结果表明,BPO-BHN在紫外光下能显著促进2,4-二氯苯酚(2,4-DCP)的降解。基于准一级动力学,BPO-BHN的表观降解速率常数(k)为0.050 min,分别约为单独的BPO(k = 0.015 min)和BHN(k = 0.004 min)的3.33倍和12.5倍。这表明当BPO和BHN形成直接固态Z型异质结结构时,它们之间存在几乎协同的光催化作用,这有利于提高紫外光捕获、空穴/电子分离和氧化能力。特别是,作为一种新型的非线性光学(NLO)材料,BHN因其在价带中通过高电位C面从BPO捕获光电子的独特能力,在Z型结构的形成中发挥了重要作用。本研究为开发更有效的光催化剂以降解水中有机污染物提供了一种概念验证策略。