材料科学
蒸发
热的
等离子体子
能量转换
光热治疗
等离子纳米粒子
太阳能
热质量
热能
光电子学
光热效应
纳米技术
气象学
热力学
物理
生物
生态学
作者
Chao Chang,Chao Yang,Yanming Liu,Peng Tao,Chengyi Song,Wen Shang,Jianbo Wu,Tao Deng
标识
DOI:10.1021/acsami.6b08077
摘要
The plasmonic heating effect of noble nanoparticles has recently received tremendous attention for various important applications. Herein, we report the utilization of interfacial plasmonic heating-assisted evaporation for efficient and facile solar-thermal energy harvest. An airlaid paper-supported gold nanoparticle thin film was placed at the thermal energy conversion region within a sealed chamber to convert solar energy into thermal energy. The generated thermal energy instantly vaporizes the water underneath into hot vapors that quickly diffuse to the thermal energy release region of the chamber to condense into liquids and release the collected thermal energy. The condensed water automatically flows back to the thermal energy conversion region under the capillary force from the hydrophilic copper mesh. Such an approach simultaneously realizes efficient solar-to-thermal energy conversion and rapid transportation of converted thermal energy to target application terminals. Compared to conventional external photothermal conversion design, the solar-thermal harvesting device driven by the internal plasmonic heating effect has reduced the overall thermal resistance by more than 50% and has demonstrated more than 25% improvement of solar water heating efficiency.
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