Enhanced cyclic performance initiated via an in situ transformation of Cu/CuO nanodisk to Cu/CuO/Cu2O nanosponge

被引:0
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作者
Uthirakumar Periyayya
Devendiran Madhu
Kalaiarasan Subramaniyam
Hoki Son
In-Hwan Lee
机构
[1] Korea University,Department of Materials Science and Engineering
[2] Sona College of Technology,Nanoscience Center for Optoelectronic and Energy Devices [Nano
来源
Environmental Science and Pollution Research | 2021年 / 28卷
关键词
Flexible Cu/CuO sheet; Cu; O nanosponges; Daylight photocatalyst; Recycle test; Nanocrystalline materials;
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学科分类号
摘要
A simple oxidation method for preparing CuO nanodisks on a flexible Cu sheet is presented. The crystal structure of as-prepared CuO nanodisks was analyzed by X-ray diffraction. The elemental composition and surface morphology were documented by X-ray photoelectron spectroscopy, scanning, and transmission electron microscopy. The photocatalytic performance of flexible Cu/CuO nanodisks was tested to mediate the degradation of RhB and MB dyes. After 2nd recycling, an in situ transformation of the nanodisk surface leads to electron transfer between the conduction bands of Cu2O and CuO phase, accelerating the degradation of the dyes due to a more favorable electron-hole separation under different band gap engineering. The optical and electrochemical impedance analyses were conducted to examine the efficiency of photogenerated charge carrier separation. Additionally, in the photodegradation system of Cu/CuO nanodisks, the generation of superoxide radical (·O2−) is responsible for the dye degradation under daylight irradiation. The generation of the latter radical is energetically feasible since the conduction band of Cu2O (− 0.28 eV) is well-matching with the redox potential of O2/·O2− (− 0.28 eV). Consequently, it is concluded that the cyclic stability shows the usefulness of Cu/CuO nanodisk preparation for the dye degradation under daylight irradiation.
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页码:6459 / 6469
页数:10
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