4.3 Article

The Roles of the CuO Buffer Layer on the Photocatalytic Activity of the p-Si/p-CuO/n-ZnO Composite Films

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MATERIALS TRANSACTIONS
卷 64, 期 2, 页码 578-585

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JAPAN INST METALS & MATERIALS

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heterojunction; p-n junction; CuO buffer layer; photocatalyst

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The photocatalytic activity of p-Si/p-CuO buffer layer/n-ZnO nanorod composite films was studied using experimental and simulation methods. The simulation results showed that the 250 nm CuO buffer layer contributed the highest percentage (11%) to the total current density compared to p-Si/n-ZnO composite films. The experimental results also indicated that by introducing the p-CuO buffer layer, the pseudo-order rate constant (k) could be enhanced by 12%, and the composite film exhibited high photostability.
The photocatalytic activity of p-Si/p-CuO buffer layer/n-ZnO nanorod (NR) composite films was studied using experimental and simulation methods. The simulation results indicated that in the p-Si/p-CuO/n-ZnO composite film, the 250 nm CuO buffer layer contributes the highest value of 11% to the total current density compared to the p-Si/n-ZnO composite film. Besides that, the experimental results also indicated that by introducing the p-CuO buffer layer, the pseudo-order rate constant (k) could be enhanced up to 12% compared to the composite film without the p-CuO buffer layer -the p-Si/n-ZnO composite film. Furthermore, the recycle result indicated that the pseudo-order rate constant -k value decreased sharply after the first three reaction cycle times and gradually stabilized at a value of 0.88 s(-1) after the fourth reaction cycle. Therefore, it can be concluded that by introducing the 250 nm thick of p-CuO buffer layer in the p-Si/p-CuO/n-ZnO NRs composite film, the photocatalytic activity could be improved up to 12% compared to that without the p-CuO buffer layer. In addition, the composite film, p-Si/p-CuO buffer layer/n-Zno, is a reusable photocatalyst with high photostability. [doi:10.2320/matertrans.MT-M2022145]

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