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Thermal Annealing Induced Controllable Porosity and Photoactive Performance of 2D ZnO Sheets

机译:热退火诱导的2D ZnO板材的可控孔隙率和光敏性能

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摘要

Porous ZnO sheets containing various degrees of a nanoscaled pore were successfully synthesized using a simple hydrothermal method and various postannealing procedures. The porosity features of the ZnO sheets can be easily tuned by changing both the annealing temperature and annealing atmosphere. The dense porous nature of ZnO sheets is beneficial to enhance light absorption. Moreover, the substantially increased oxygen vacancies in the ZnO sheets were observed especially after the hydrogen treatment as revealed in the X-ray photoelectron spectroscope and photoluminescence analyses. The high density of surface crystal defect enhanced the photoinduced electron-hole separation rate of the ZnO sheets, which is crucial for an improved photoactivity. The porous ZnO sheets formed at a hydrogen atmosphere exhibited superior photoactive performance than the porous ZnO sheets formed at the high-temperature ambient air annealing. The dense pores and massive crystal defects formed by a hydrogen atmosphere annealing in the ZnO crystals might account for the observed photoactive behaviors in this study.
机译:使用简单的水热法和各种折衷程序成功地合成含有各种纳米级孔的多孔ZnO片。通过改变退火温度和退火气氛,可以容易地调谐ZnO片材的孔隙率特征。 ZnO片材的致密多孔性质有益,可以增强光吸收。此外,特别是在X射线光电子电子元和光致发光分析中显示的氢处理之后,观察到ZnO片材中的基本上增加的氧空位。高密度的表面晶体缺陷增强了ZnO片材的光突出的电子空穴分离率,这对于改善的光接收至关重要。在氢气氛下形成的多孔ZnO片材表现出优于在高温环境空气退火上形成的多孔ZnO片的优异光活性性能。在ZnO晶体中退火的氢气氛形成的密集孔和大规模晶体缺陷可能考虑了本研究中观察到的光活性行为。

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