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Structured graphene metamaterial selective absorbers for high efficiency and omnidirectional solar thermal energy conversion

机译:用于高效率和全向太阳能热能转换的结构化石墨烯超材料选择性吸收器

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An ideal solar-thermal absorber requires efficient selective absorption with a tunable bandwidth, excellent thermal conductivity and stability, and a simple structure for effective solar thermal energy conversion. Despite various solar absorbers having been demonstrated, these conditions are challenging to achieve simultaneously using conventional materials and structures. Here, we propose and demonstrate three-dimensional structured graphene metamaterial (SGM) that takes advantages of wavelength selectivity from metallic trench-like structures and broadband dispersionless nature and excellent thermal conductivity from the ultrathin graphene metamaterial film. The SGM absorbers exhibit superior solar selective and omnidirectional absorption, flexible tunability of wavelength selective absorption, excellent photothermal performance, and high thermal stability. Impressive solar-to-thermal conversion efficiency of 90.1% and solar-to-vapor efficiency of 96.2% have been achieved. These superior properties of the?SGM absorber suggest it has a great potential for practical applications of solar thermal energy harvesting and manipulation.
机译:理想的太阳能热吸收器需要高效的选择性吸收可调谐带宽,优异的导热性和稳定性,以及用于有效的太阳能热能转换的简单结构。尽管已经证明了各种太阳能吸收剂,但这些条件恰好地使用常规材料和结构同时实现。在这里,我们提出并证明了三维结构石墨烯超材料(SGM),其利用来自金属沟槽的结构和来自超薄石墨烯超材料膜的宽带分散性的具有优异的导热性的波长选择性的优点。 SGM吸收剂具有卓越的太阳能选择性和全向吸收,波长选择性吸收的柔性可调性,优异的光热性能和高热稳定性。令人印象深刻的太阳能转换效率为90.1%,实现了96.2%的太阳能蒸汽效率。这些优越的性质的ΔSGM吸收器表明它具有太阳能热能收集和操纵的实际应用具有很大的潜力。

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