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Accelerated pyro-catalytic hydrogen production enabled by plasmonic local heating of Au on pyroelectric BaTiO3 nanoparticles

You, Huilin; Li, Siqi; Fan, Yulong; Guo, Xuyun; Lin, Zezhou; Ding, Ran; Cheng, Xin; Zhang, Hao; Lo, Tsz Woon Benedict; Hao, Jianhua; Zhu, Ye; Tam, Hwa-Yaw; Lei, Dangyuan*; Lam, Chi-Hang; Huang, Haitao*
SCIE
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摘要

The greatest challenge that limits the application of pyro-catalytic materials is the lack of highly frequent thermal cycling due to the enormous heat capacity of ambient environment, resulting in low pyro-catalytic efficiency. Here, we introduce localized plasmonic heat sources to rapidly yet efficiently heat up pyro-catalytic material itself without wasting energy to raise the surrounding temperature, triggering a significantly expedited pyro-catalytic reaction and enabling multiple pyro-catalytic cycling per unit time. In our work, plasmonic metal/pyro-catalyst composite is fabricated by in situ grown gold nanoparticles on three-dimensional structured coral-like BaTiO3 nanoparticles, which achieves a high hydrogen production rate of 133.1 +/- 4.4 mu mol.g(-1.)h(-1) under pulsed laser irradiation. We also use theoretical analysis to study the effect of plasmonic local heating on pyro-catalysis. The synergy between plasmonic local heating and pyro-catalysis will bring new opportunities in pyro-catalysis for pollutant treatment, clean energy production, and biological applications.

关键词

OXYGEN GENERATION

出版信息

论文状态
公开发表
期刊名称
Nature Communications
发表日期
2022-10-17
卷
13
期
1
页码
6144
DOI
10.1038/s41467-022-33818-4

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