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Self-assembly of highly efficient broadband plasmonic absorbers for solar steam generation

机译:自组装高效的宽带等离子体吸收器用于产生太阳能蒸汽

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摘要

The study of ideal absorbers, which can efficiently absorb light over a broad range of wavelengths, is of fundamental importance, as well as critical for many applications from solar steam generation and thermophotovoltaics to light/thermal detectors. As a result of recent advances in plasmonics, plasmonic absorbers have attracted a lot of attention. However, the performance and scalability of these absorbers, predominantly fabricated by the top-down approach, need to be further improved to enable widespread applications. We report a plasmonic absorber which can enable an average measured absorbance of ~99% across the wavelengths from 400 nm to 10 μm, the most efficient and broadband plasmonic absorber reported to date. The absorber is fabricated through self-assembly of metallic nanoparticles onto a nanoporous template by a one-step deposition process. Because of its efficient light absorption, strong field enhancement, and porous structures, which together enable not only efficient solar absorption but also significant local heating and continuous stream flow, plasmonic absorber–based solar steam generation has over 90% efficiency under solar irradiation of only 4-sun intensity (4 kW m−2). The pronounced light absorption effect coupled with the high-throughput self-assembly process could lead toward large-scale manufacturing of other nanophotonic structures and devices.
机译:理想的吸收器的研究至关重要,它对从宽泛的波长范围内的光有效地吸收是至关重要的,对于从太阳能蒸汽产生和热光电技术到光/热探测器的许多应用来说,这也是至关重要的。由于等离子技术的最新进展,等离子吸收器引起了广泛的关注。但是,这些吸收器的性能和可扩展性(主要是通过自上而下的方法制造)需要进一步改进以实现广泛的应用。我们报告了一种等离激元吸收剂,该吸收剂可实现从400 nm到10μm波长的平均测得的吸光度〜99%,这是迄今为止报道的最高效,宽带的等离激元吸收剂。通过一步沉积工艺将金属纳米粒子自组装到纳米多孔模板上来制造吸收体。由于其有效的光吸收,强大的场增强和多孔结构,这些结构不仅可以有效地吸收太阳光,而且还可以显着提高局部加热和连续流,基于等离子吸收器的太阳蒸汽产生仅在太阳辐射下的效率超过90%。 4太阳强度(4 kW m −2 )。明显的光吸收效应与高通量自组装过程相结合,可能会导致大规模制造其他纳米光子结构和器件。

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