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Tandem structured spectrally selective coating layer of copper oxide nanowires combined with cobalt oxide nanoparticles

机译:氧化铜纳米线与氧化钴纳米粒子的串联结构光谱选择性涂层

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Increasing the light absorption across the wide solar spectrum has important implications for applications in solar-thermal and photovoltaic energy conversion. Here, we report novel tandem structures combing two different materials with complementary optical properties and microstructures: copper oxide (CuO) nanowires (NWs) and cobalt oxide (Co3O4) nanoparticles (NPs). Copper oxide NWs of 100-200 nm in diameter and 5 pm long are grown thermally on copper foil in air and cobalt oxide NPs of 100-200 nm in diameter are synthesized hydrothermally. Tandem structures of spectrally selective coating (SSC) layer are built with three different methods: spray-coating, dip-coating of cobalt oxide NPs into copper oxide NWs forest, and transferring of copper oxide NWs layer onto cobalt oxide NPs layer. The tandem-structured SSC layers fabricated from the spray-coating, dip-coating and transferring methods exhibit figure of merit (FOM) values of 0.875, 0.892 and 0.886, respectively, which are significantly higher than that of the starting copper oxide NWs (FOM=0.858) and cobalt oxide NPs (FOM=0.853). Our results demonstrate the efficacy of using novel tandem structures for enhanced light absorption of solar spectrum, which will find broad applications in solar energy conversion. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在宽广的太阳光谱中增加光吸收对于在太阳热能和光伏能量转换中的应用具有重要意义。在这里,我们报告新颖的串联结构,将两种不同的材料与互补的光学特性和微观结构相结合:氧化铜(CuO)纳米线(NWs)和氧化钴(Co3O4)纳米粒子(NPs)。在空气中在铜箔上热生长直径为100-200 nm且长为5 pm的氧化铜NW,并水热合成直径为100-200 nm的氧化钴NP。光谱选择涂层(SSC)层的串联结构是通过三种不同的方法构建的:喷涂,将氧化钴NP浸涂到氧化铜NWs林中以及将氧化铜NWs层转移到氧化钴NPs层上。通过喷涂,浸涂和转移方法制造的串联结构SSC层的品质因数(FOM)值分别为0.875、0.892和0.886,显着高于起始的氧化铜NW(FOM)。 = 0.858)和氧化钴NP(FOM = 0.853)。我们的结果证明了使用新颖的串联结构来增强太阳光谱的光吸收的功效,这将在太阳能转换中找到广泛的应用。 (C)2014 Elsevier Ltd.保留所有权利。

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