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Numerically investigating the optical properties of plasmonic metallic nanoparticles for effective solar absorption and heating

机译:数值研究等离子金属纳米粒子的光学性质,以有效地吸收和加热太阳

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Solar heating with plasmonic nanoparticles (NPs) has great potential for application in optical storage, solar thermal collectors, and thermo-photovoltaic technologies. The performance of solar thermal conversion applications depends on the NP parameters. Herein, we present a comparative analysis of the solar absorption properties of noble metallic NPs (Au, Ag, Cu, and Al), to determine suitable parameters for effective solar heating by using the finite-difference time-domain method and the finite-element method. Results show that light absorption plays a major role in the interaction of light with the small NP size, small sphericity, or small dielectric constant of the surrounding environment. Au and Cu NPs have higher solar absorption power and absorption ratio. The NP size has little effect on the peak absorption wavelength. A Au sphere smaller than 30 nm has greater solar absorption ability for the solar heating process when considering the absorption power per unit volume. The solar absorption power first increases rapidly and subsequently decreases slightly with increasing dielectric constant, and can become as high as 0.0045 nW when the dielectric constant is 1.33-2.5 in the calculation samples. The solar scattering power and solar absorption power decrease with increasing sphericity, i.e., ranging from cubic to cylindrical and spherical. Finally, simulation results of NP solar heating show that the Au cube obtains a higher maximum temperature than the Au sphere and Au cylinder, which further verifies that Au NPs with low sphericity can significantly enhance solar heating ability in the simulation cases.
机译:用等离子体纳米粒子(NPs)进行的太阳能加热在光学存储,太阳能集热器和热光伏技术中具有巨大的潜力。太阳能热转换应用的性能取决于NP参数。本文中,我们对贵金属NP(Au,Ag,Cu和Al)的太阳吸收特性进行了比较分析,以通过使用时域有限差分法和有限元法确定有效的太阳能加热合适的参数。方法。结果表明,光吸收在光与小NP尺寸,小球形度或周围环境的介电常数的相互作用中起主要作用。金和铜纳米粒子具有较高的太阳吸收功率和吸收率。 NP尺寸对峰吸收波长几乎没有影响。考虑到每单位体积的吸收功率,小于30 nm的Au球在太阳能加热过程中具有更高的太阳吸收能力。太阳吸收功率首先迅速增加,然后随介电常数的增加而略有下降,当计算样本中的介电常数为1.33-2.5时,太阳吸收功率可能高达0.0045 nW。太阳散射功率和太阳吸收功率随着球形度的增加而降低,即从立方到圆柱和球形。最后,NP太阳加热的模拟结果表明,Au立方体获得的最高温度高于Au球和Au圆柱体,这进一步证明,在模拟情况下,低球形度的Au NP可以显着提高太阳加热能力。

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