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Absorption and scattering properties of carbon nanohorn-based nanofluids for direct sunlight absorbers

机译:碳纳米角基纳米流体对直接日光吸收剂的吸收和散射特性

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摘要

In the present work, we investigated the scattering and spectrally resolved absorption properties of nanofluids consisting in aqueous and glycol suspensions of single-wall carbon nanohorns. The characteristics of these nanofluids were evaluated in view of their use as sunlight absorber fluids in a solar device. The observed nanoparticle-induced differences in optical properties appeared promising, leading to a considerably higher sunlight absorption with respect to the pure base fluids. Scattered light was found to be not more than about 5% with respect to the total attenuation of light. Both these effects, together with the possible chemical functionalization of carbon nanohorns, make this new kind of nanofluids very interesting for increasing the overall efficiency of the sunlight exploiting device.PACS78.40.Ri, 78.35.+c, 78.67.Bf, 88.40.fh, 88.40.fr, 81.05.U.
机译:在目前的工作中,我们研究了由单壁碳纳米角的水性和乙二醇悬浮液组成的纳米流体的散射和光谱分辨吸收特性。考虑到它们在太阳能设备中用作日光吸收剂流体的性能,对这些纳米流体的特性进行了评估。观察到的纳米粒子引起的光学性质差异看来是有希望的,从而导致相对于纯净基础液而言更高的日光吸收。发现散射光相对于光的总衰减不大于约5%。这两种作用以及碳纳米角可能的化学功能化,使得这种新型的纳米流体对于提高日光照射装置的整体效率非常有趣。PACS78.40.Ri,78.35。+ c,78.67.Bf,88.40。 fh,88.40.fr,81.05.U.

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