首页> 外文期刊>Applied Surface Science >Solvent-exfoliation of transition-metal dichalcogenide MoS_2 to provide more active sites for enhancing photocatalytic performance of BiOIO_3/g-C_3N_4 photocatalyst
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Solvent-exfoliation of transition-metal dichalcogenide MoS_2 to provide more active sites for enhancing photocatalytic performance of BiOIO_3/g-C_3N_4 photocatalyst

机译:过渡金属二卤化钼MoS_2的溶剂剥离作用,以提供更多的活性位点来增强BiOIO_3 / g-C_3N_4光催化剂的光催化性能

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摘要

The ternary complex photocatalysts of BiOIO3/g-C3N4/MoS2 by solvent-exfoliation method was synthesized for the first time. In the typical procedure, the BiOIO3/g-C3N4 was obtained via hydrothermal synthesis technique, and then the BiOIO3/g-C3N4/MoS2 photocatalysts were prepared via ultrasonic solvent-exfoliation method from bulk commercial MoS 2 in the alcohol solution. The samples of BiOIO3/g-C3N4/MoS2 were analyzed by PL, XRD and other characterization analysis methods. The photocatalytic activity of the as-prepared samples was investigated by removing gas phase mercury irradiation under visible light. The as-prepared BCM-0.3 exhibits excellent photocatalytic performance, being with the highest efficiency of 70.58%. Owing to the electronic channels of field-effect, an internal electric field was formed through the corresponding band-gap engineering, improving photocatalytic reaction. Besides, the excellent activity of the ternary photocatalysts BiOIO3/g-C3N4/MoS2 is attributed to heterostructure between BiOIO3/g-C3N4 and MoS2, which enlarges spectral response and improved separation efficiency of charge carriers, and MoS2-composing, which provides more active sites for catalytic oxidation. In addition, the as-prepared samples with excellent photocatalytic performance also offer a perspective insight into the hydrogen evolution, CO2 conversion and degradation of organic pollutants.
机译:首次通过溶剂剥离法合成了BiOIO3 / g-C3N4 / MoS2三元复合光催化剂。在典型步骤中,通过水热合成技术获得BiOIO3 / g-C3N4,然后用超声波溶剂-剥落法从醇溶液中的大宗商品MoS 2制备BiOIO3 / g-C3N4 / MoS2光催化剂。通过PL,XRD和其他表征分析方法对BiOIO3 / g-C3N4 / MoS2样品进行了分析。通过去除可见光下的气相汞辐射,研究了所制备样品的光催化活性。所制备的BCM-0.3具有优异的光催化性能,其最高效率为70.58%。由于场效应的电子通道,通过相应的带隙工程形成了内部电场,从而改善了光催化反应。此外,三元光催化剂BiOIO3 / g-C3N4 / MoS2的优异活性归因于BiOIO3 / g-C3N4和MoS2之间的异质结构,从而扩大了光谱响应并提高了电荷载流子的分离效率,而MoS2组成则提供了更多的活性催化氧化的位点。此外,所制备的样品具有出色的光催化性能,还可以洞悉氢气的释放,CO2转化和有机污染物的降解。

著录项

  • 来源
    《Applied Surface Science》 |2019年第1期|838-851|共14页
  • 作者单位

    Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai 200090, Peoples R China;

    Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai 200090, Peoples R China|Shanghai Inst Pollut Control & Ecol Secur, Shanghai, Peoples R China;

    Anhui Univ Technol, Sch Energy & Environm Engn, Maanshan 243002, Peoples R China;

    Shanghai Environm Monitoring Ctr, Shanghai 200030, Peoples R China;

    Yangzhou Univ, Sch Hydraul Energy & Power Engn, Yangzhou 225127, Jiangsu, Peoples R China;

    Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai 200090, Peoples R China;

    Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai 200090, Peoples R China;

    Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai 200090, Peoples R China;

    Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai 200090, Peoples R China;

    Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai 200090, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photocatalytic; Oxidation; Solvent-exfoliation; Heterostructure; Field-effect;

    机译:光催化;氧化;溶剂剥离;异质结构;场效应;

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