表面等离子共振
光热治疗
等离子体子
纳米颗粒
可见光谱
制氢
材料科学
光化学
光电子学
光热效应
氢
吸收(声学)
辐照
紫外线
光催化
表面等离子体子
纳米技术
化学
催化作用
物理
复合材料
核物理学
有机化学
生物化学
作者
Rui Song,Maochang Liu,Bing Luo,Jiafeng Geng,Dengwei Jing
摘要
Abstract Distinguishing the contributions from localized surface plasmon resonance (LSPR)induced photothermal effect is a significant challenge in the study of solar hydrogen production. Herein, a well‐defined one‐dimensional Cu/TiO 2 heterostructure with Cu size of 3–6 nm is designed to address such issue. Cu nanoparticles present notable LSPR absorption from visible to near‐infrared light, while no hydrogen is produced in the presence of simulated light with λ ≥ 700 nm. Interestingly, a remarkable improvement of hydrogen evolution under full‐spectrum light was observed which is almost twice of that under only ultraviolet–visible light irradiation, implying the critical yet auxiliary role of LSPR‐induced photothermal effect in promoting photocatalytic performance. Significantly, a notable reduction of the apparent activation energy and strengthened charge separation efficiency are observed due to the increased local temperature of catalyst surface caused by the plasmon‐induced photothermal effect. The kinetic and thermodynamic changes should be responsible for the enhanced hydrogen production.
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