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Enhanced photocatalytic activity of WS2 film by laser drilling to produce porous WS2/WO3 heterostructure

机译:通过激光钻孔增强WS2膜的光催化活性以产生多孔WS2 / WO3异质结构

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摘要

Methods and mechanisms for improvement of photocatalytic activity, are important and popular research topics for renewable energy production and waste water treatment. Here, we demonstrate a facile laser drilling method for engineering well-aligned pore arrays on magnetron-sputtered WS2 nanofilms with increased active edge sites; the proposed method promotes partial oxidation to fabricate WS2/WO3 heterojunctions that enhance the separation of photogenerated electron-hole pairs. The WS2 film after one, two, and three treatments exhibited photocurrent density of 3.9, 6.2, and 8 mu A/cm(2), respectively, reaching up to 31 times larger than that of pristine WS2 film along with greatly improved charge recombination kinetics. The unprecedented combinational roles of laser drilling revealed in this study in regards to geometric tailoring, chemical transformation, and heterojunction positioning for WS2- based composite nanomaterials create a foundation for further enhancing the performance of other 2D transition metal dichalcogenides in photocatalysis via laser treatment.
机译:改善光催化活性的方法和机理是可再生能源生产和废水处理的重要且受欢迎的研究主题。在这里,我们展示了一种简便的激光钻孔方法,用于在磁控溅射WS2纳米膜上工程化排列良好的孔阵列,并增加活性边缘位点;所提出的方法促进部分氧化以制造WS2 / WO3异质结,从而增强了光生电子-空穴对的分离。经过一,二和三次处理的WS2膜分别显示出3.9、6.2和8μA/ cm(2)的光电流密度,比原始WS2膜大31倍,并且电荷复合动力学大大提高。这项研究揭示了在基于WS2的复合纳米材料的几何剪裁,化学转化和异质结定位方面,激光钻孔具有空前的组合作用,为进一步增强其他2D过渡金属二卤化物在通过激光处理的光催化性能方面奠定了基础。

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