异质结
材料科学
光催化
原电池
罗丹明B
锌
金属
半导体
化学工程
氧化物
纳米技术
光电子学
催化作用
冶金
生物化学
化学
工程类
作者
Hong Peng Zhao,Zhenghua Du,Diandian Liu,Yijian Lai,Tao Yang,Mingyan Wang,Yuesheng Ning,Fujun Yin,Binyuan Zhao
出处
期刊:NANO
[World Scientific]
日期:2022-02-01
卷期号:17 (02)
被引量:3
标识
DOI:10.1142/s1793292022500114
摘要
The design and construction of semiconductor–metal heterojunctions are being considered to be an effective way to overcome the limited visible-light absorption of semiconductors. Herein, a facile and scale approach is reported for the first time to synthesize Cu/ZnO heterojunctions by one-step galvanic replacement between Zn and cuprous solution reaction. Two kinds of morphologies Cu/ZnO heterojunctions could be obtained by changing cuprous salt anion such as Br − , Cl − and I − . A flower-like Cu/ZnO heterostructured is chosen as a representative to demonstrate the facility and enhanced photocatalytic performance toward Rhodamine B degradation under visible-light irradiation. Results showed flower-like Cu/ZnO heterojunctions have higher photocatalytic performance than the other two morphologies. The galvanic replacement growth mechanism of Cu/ZnO heterojunctions was also further investigated. It is found that Cu/ZnO heterojunctions formed from Zn and Cu 2 O at an acid solution and room condition. This work indicates that galvanic replacement reaction at room temperature is an excellent technique to grow Cu/ZnO heterojunctions and demonstrates that the hole and electron transfer between Cu and ZnO can efficiently enhance their photocatalytic performance. This general method can also be further explored to guide the design of metal/metal oxide heterostructured on other substrates, such as Zn, Ni and Cu foils.
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