等离子体子
热发射率
材料科学
制作
热的
光电子学
等离子太阳电池
光伏系统
吸收率
选择性表面
太阳能电池
纳米技术
光学
聚合物太阳能电池
物理
电气工程
工程类
医学
梁(结构)
替代医学
病理
气象学
反射率
作者
Meijie Chen,Shuang Li,Hongjie Yan
摘要
Spectrally selective and thermally stable solar absorber attracts lot of attention in solar desalination and other solar thermal applications. Fabricating stable solar selective absorbers (SSAs), in general, and scalability remain a challenge in solar thermal applications. Here, a simple, general, and scalable electrodeposition strategy is demonstrated to fabricate high-performance plasmonic solar selective absorbers, which can generate different metal element (such as Ni, Co, CoNi, and FeCoNi) SSAs on various shape substrates to suit different requirements in solar thermal applications. Taking metal Ni as an example, average solar absorptance [Formula: see text] = 0.90 and thermal emittance [Formula: see text] = 0.08 at 100 °C can be achieved by optimizing the deposition parameters, resulting in a solar thermal conversion efficiency of [Formula: see text] = 0.82. This plasmonic SSA maintains good stability at 200 °C in the air and 400 °C in the vacuum, respectively. This simple, general, and scalable strategy can be a potential method to fabricate different plasmonic SSAs in solar thermal applications.
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