Cu/SiO2/TiO2纳米碗阵列电极的构建及其等离激元光解水性能

    Construction of Cu/SiO2/TiO2 Nanobowl Arrays Electrode and Its Plasmonic Water Splitting Performance

    • 摘要: 利用纳米金属的等离激元共振效应可提高光解水效率, 但金属Cu易氧化且Cu/TiO2界面间热电子传递过程复杂。本项研究制备了分层的Cu/TiO2纳米碗阵列并在界面间引入SiO2中间层(10~15 nm), 实验和模拟相结合研究了光解水性能和等离激元共振效应的作用机制。结果表明: Cu/TiO2中Cu被氧化形成的Cu2O薄膜虽能协助热电子的注入, 但对Cu的吸光性有抑制作用; 加入SiO2中间层后可增强光吸收和阻隔热电子迁移, 且等离激元能量转移作用促使更多的光生电子与空穴对的生成, 因此Cu/SiO2/TiO2纳米碗阵列的光电性能相对提高。

       

      Abstract: The plasmon resonance effect of the metal nanoparticles is of great benefit to improve the efficiency of solar water splitting. However, the metal Cu is easy to be oxidized, and a complex transfer process of hot electrons exits in Cu/TiO2 interfaces. In this work, the hierarchical Cu/TiO2 nanobowl arrays were prepared and a SiO2 interlayer with a thickness of 10-15 nm was introduced between the interface of Cu and TiO2. The solar water splitting performances and the mechanism of plasmonic Cu metal were investigated by combing the experiment with simulation. Results show that the Cu2O film formed by the oxidation of Cu in Cu/TiO2 can assist the injection of hot electrons, but has an inhibitory effect on the light absorption of Cu. It has a positive effect on enhancing light absorption and blocking hot electron migration after adding the SiO2 interlayer. The plasmon energy transfer promotes the formation of more photogenerated electron-hole pairs. Therefore, the Cu/SiO2/TiO2 nanobowl arrays exhibit the enhanced photoelectrochemical performance.

       

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