首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Durability tests and up-scaling of selective absorbers based on copper–manganese oxide deposited by dip-coating
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Durability tests and up-scaling of selective absorbers based on copper–manganese oxide deposited by dip-coating

机译:基于浸涂法沉积的基于铜-锰氧化物的选择性吸收剂的耐久性测试和放大

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摘要

Selective absorbers based on copper–manganese oxide were prepared by dip-coating method. The optical properties of the 2-layer configuration (Al/CuMnOx/SiO2) were improved by introducing an additional absorber-protective layer directly in contact with the aluminium substrate (i.e. 3-layer absorber), for which solar absorptance up to 0.950 was achieved. Long-term durability of these absorbers was investigated by applying both thermal stability and humidity tests established by the IEA-SHC Task X. All the analyzed samples qualified for both tests leading to similar or even better results than some commercial absorbers. In order to prove the feasibility of the up-scaling process, 3-layer absorber samples of 3030 cm2 size were prepared. It was observed that sintering process was determinant for obtaining fully homogenous films within the whole large-area surface. By using a sintering process with increasing temperature, 3030 cm2 samples with as=0.93570.005 (100 measurements) could be obtained. This study reveals that it is possible to deposit CuMn-oxide absorbers on large-area substrates and that they could be a good alternative to the materials present today in the market, not only in terms of optical properties but also in terms of long term durability.
机译:通过浸涂法制备了基于铜-锰氧化物的选择性吸收剂。通过引入直接与铝基板(即三层吸收剂)接触的附加吸收剂保护层,可改善2层构造(Al / CuMnOx / SiO2)的光学性能,实现了高达0.950的太阳吸收率。通过应用IEA-SHC Task X建立的热稳定性和湿度测试,研究了这些吸收器的长期耐用性。所有分析出的样品均符合两项测试的条件,与某些商用吸收器相比,结果相近甚至更好。为了证明放大工艺的可行性,制备了3030 cm2尺寸的3层吸收体样品。观察到,烧结过程是在整个大面积表面上获得完全均质膜的决定性因素。通过使用温度升高的烧结工艺,可以获得3030 cm2的样品,其as = 0.93570.005(100个测量值)。这项研究表明,可以在大面积基板上沉积CuMn-氧化物吸收剂,并且它们不仅可以在光学性能上,而且在长期耐用性方面都可以很好地替代当今市场上存在的材料。 。

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