2D/2D step-schemeα-Fe2O3/Bi2WO6 photocatalyst with efficient charge transfer for enhanced photo-Fenton catalytic activity  被引量:10

具有高效电荷分离的2D/2D α-Fe2O3/Bi2WO6 S型异质结增强光-芬顿催化活性

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作  者:Wenliang Wang Wenli Zhao Haochun Zhang Xincheng Dou Haifeng Shi 王文亮;赵稳立;张灏纯;窦新城;史海峰(江南大学理学院,江苏无锡214122;江南大学江苏省轻工光电工程技术研究中心,江苏无锡214122)

机构地区:[1]School of Science,Jiangnan University,Wuxi 214122 Jiangsu,China [2]Jiangsu Provincial Research Center of Light Industrial Optoelectronic Engineering and Technology,Jiangnan University,Wuxi 214122,Jiangsu,China

出  处:《Chinese Journal of Catalysis》2021年第1期97-106,共10页催化学报(英文)

基  金:国家自然科学基金(21203077,21773099);中央高校基本科研业务费(JUSRP51716A);江苏省青蓝工程项目.

摘  要:Although the traditional Fenton reaction is considered an effective strategy for solving problems caused by environmental pollution,construction of an efficient photocatalytic system by coordinating the Fenton reaction is challenging.In this study,2D/2D step-schemeα-Fe2O3/Bi2WO6(FO/BWO)heterostructure photo-Fenton catalysts were successfully fabricated by a facile hydrothermal method.The as-prepared materials were characterized by XRD,FT-IR,TEM,XPS,UV-vis DRS,PL,I-t,EIS,and BET analyses.Under visible light irradiation,FO/BWO exhibited remarkably high and stable photo-Fenton catalytic activity for the degradation of methyl blue(MB)at low concentrations of H2O2.It was noted that FO/BWO(0.5)displayed a significantly enhanced photo-Fenton catalytic activity,which was 11.06 and 3.29 times those of FO nanosheets and BWO nanosheets,respectively.The notably improved photo-Fenton catalytic activity of FO/BWO was mainly due to the combination of H2O2 and FO under light illumination and the presence of the 2D/2D S-scheme heterostructure,with the large contact surface,abundant active sites,and efficient separation rate of photogenerated carriers playing contributory roles.Additionally,a possible catalytic mechanism for the FO/BWO composite was preliminarily proposed via active species trapping experiments.In summary,this study provided new insights into the synthesis of an effectively heterogeneous 2D/2D S-scheme photo-Fenton catalyst for degradation of organic pollutants in wastewater.近年来,Fenton反应由于其成本低,反应速度快,操作简单等优势受到了广泛的研究.传统的均相Fenton反应可通过H2O2氧化Fe2+产生具有强氧化性的羟基自由基,用于处理难降解的有机物.然而,Fenton反应存在两个主要问题,首先,在Fenton反应中需要加入大量的酸来维持酸性环境,以保证反应的最佳活性.其次,Fenton反应中铁离子不断流失并形成固体污泥,这严重影响了Fenton反应产生•OH的效率.目前,将光催化反应与非均相芬顿反应相结合是改善这些问题的有效方案.非均相光芬顿反应不仅能提高有机物降解的活性,而且通过光催化剂导带上的电子有效减少Fe^3+的浸出和铁氢氧化物沉淀的产生.最近,作为一种可见光Fenton催化剂,α-Fe2O3可以在几乎中性的条件下发生光芬顿反应,这解决了在反应过程中需要随时调整PH值的问题.此外,光照条件下α-Fe2O3价带上的电子能跃迁至导带并将Fe3+还原成Fe^2+,从而减少铁离子的损耗.然而,由于光生载流子复合率较高等问题,单一α-Fe2O3光催化剂的催化活性仍不理想.构建具有2D/2D结构的S型异质结可以缩短电子在界面间的传输距离,增大材料的活性位点,将光生电子-空穴在空间上分离,从而有效增强光生载流子的分离效率.因此,构建2D/2Dα-Fe2O3/Bi2WO6 S型异质结,并用于光芬顿反应有望进一步提高对有机污染物的降解效率.本文通过简易的水热法制备了具有2D/2D结构的α-Fe2O3/Bi2WO6 S型异质结光芬顿催化剂,并通过XRD、BET、TEM、XPS和UV-Vis等手段对催化剂的晶体结构、元素状态、微观结构、光学性质和化学组分进行了表征.通过在可见光照射下降解甲基蓝(MB),考察了α-Fe2O3/Bi2WO6的光芬顿催化活性.结果表明,由于光催化反应与Fenton反应的协同作用,α-Fe2O3/Bi2WO6表现出了明显增强的光-Fenton催化活性,最佳比例的α-Fe2O3/Bi2WO6的活性分别是单一α-Fe2O3和Bi2WO6的11.06倍

关 键 词:Bi2WO6 Α-FE2O3 S-scheme PHOTO-FENTON 2D photocatalyst 

分 类 号:X703[环境科学与工程—环境工程] TQ426[化学工程]

 

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