论文标题

血浆增强的太阳光热效应的研究Au nr@pvdf micro/nano-film

Investigation of plasmonic enhanced solar photothermal effect of Au NR@PVDF micro/nano-film

论文作者

Ding, Shenyi, Zhang, Jixiang, Liu, Cui, Li, Nian, Zhang, Shudong, Wang, Zhenyang, Xi, Min

论文摘要

金纳米球(AU NSS)和金纳米棒(Au nrs)是传统的贵金属等离子体纳米材料。特别是,由于延长的光接收范围,具有可调式纵向等离子体共振的AU NRS适用于高效的光热应用。在这项工作中,我们合成了相似体积的Au nrs和Au nss,随后将它们开发为Au nr/pvdf和Au ns/pvdf纳米FILM,它们均表现出由太阳能光热实验评估的出色太阳光热性能。我们发现,与AU NS/PVDF纳米膜相比,AU NR/PVDF纳米膜显示出更高的太阳光热性能。通过详细的分析,例如形态表征,光学测量和有限元方法(FEM)建模,我们发现聚集的Au NRS纳米群体内的等离子体耦合效应有助于光谱蓝变量和增强的光疗性能。与AU NS/PVDF纳米膜相比,由于纳米粉料内的强烈的等离激元相互作用的结果,Au nr/pvdf纳米纤维表现出更高效率的光对热转化率,这是纳米内部强烈的等离激晶相互作用的结果,这进一步通过单色激光光质量质量层和女性进行了验证。我们的工作证明,AU NR具有等离子太阳光热应用的巨大潜力,并设想用于新型的等离子应用。

Gold nanospheres (Au NSs) and gold nanorods (Au NRs) are traditional noble metal plasmonic nanomaterials. Particularly, Au NRs with tunable longitudinal plasmon resonance from visible to the near infrared (NIR) range were suitable for high efficient photothermal applications due to extended light receiving range. In this work, we synthesized Au NRs and Au NSs of similar volume, and subsequently developed them into Au NR/PVDF and Au NS/PVDF nanofilm, both of which exhibited excellent solar photothermal performance evaluated by solar photothermal experiments. We found that Au NR/PVDF nanofilm showed higher solar photothermal performance than Au NS/PVDF nanofilm. Through detailed analysis, such as morphological characterization, optical measurement, and finite element method (FEM) modeling, we found that the plasmonic coupling effects inside the aggregated Au NRs nanoclusters contributed to the spectral blue-shifts and intensified photothermal performance. As compared to Au NS/PVDF nanofilms, Au NR/PVDF nanofilm exhibited higher efficient light-to-heat conversion rate, because of the extended light receiving range and high absorbance, as the result of strong plasmonic interactions inside nanoclusters, which was further validated by monochromatic laser photothermal experiments and FEM simulations. Our work proved that the Au NRs have huge potential for plasmonic solar photothermal applications, and are envisioned for novel plasmonic applications.

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