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用于太阳能光热发电和光热蒸发的易修复高性能碳纳米结构吸收体。

Easily Repairable and High-Performance Carbon Nanostructure Absorber for Solar Photothermoelectric Conversion and Photothermal Water Evaporation.

机构信息

Chair Materials for Electrical Engineering and Electronics, Institute of Materials Science and Engineering and Institute of Micro- and Nanotechnologies MacroNano, Technische Universität Ilmenau, Gustav-Kirchhoff-Straße 5, 98693Ilmenau, Germany.

出版信息

ACS Appl Mater Interfaces. 2023 Feb 15;15(6):8761-8769. doi: 10.1021/acsami.2c22077. Epub 2023 Feb 6.

Abstract

Carbon materials are a category of broadband solar energy harvesting materials that can convert solar energy into heat under irradiation, which can be used for photothermal water evaporation and photothermoelectric power generation. However, destruction of the carbon nanostructure during usage will significantly decrease the light-trapping performance and, thus, limit their practical applications. In this article, an easily repairable carbon nanostructure absorber with full-solar-spectrum absorption and a hierarchically porous structure is prepared. The carbon absorber shows a superhigh light absorption of above 97% across the whole solar spectrum because of multiple scatterings within the carbon nanostructure and photon interaction with the carbon nanoparticles. The excellent light absorption performance directly leads to a good photothermal effect. As a consequence, the carbon absorber integrated with a thermoelectric module can obtain a large power (133.3 μW cm) output under 1 sun. In addition, the carbon absorber combined with the sponge can achieve a high photothermal water evaporation efficiency of 83.6% under 1 sun. Its high-efficiency solar-to-electricity and photothermal water evaporation capabilities demonstrate that the carbon absorber with superhigh absorption, simple fabrication, and facile repairability shows great potential for practical fresh water production and electric power generation.

摘要

碳材料是一类宽带太阳能收集材料,在辐照下可以将太阳能转化为热能,可用于光热蒸发和光热电发电。然而,在使用过程中碳纳米结构的破坏会显著降低光捕获性能,从而限制了它们的实际应用。本文制备了一种具有全太阳光谱吸收和分级多孔结构的易修复碳纳米结构吸收体。由于碳纳米结构内的多次散射和光子与碳纳米颗粒的相互作用,碳吸收体在整个太阳光谱范围内表现出超过 97%的超高光吸收。优异的光吸收性能直接导致良好的光热效应。因此,与热电模块集成的碳吸收体在 1 个太阳下可以获得 133.3 μW cm 的大功率输出。此外,碳吸收体与海绵结合,在 1 个太阳下可以实现 83.6%的高光热蒸发效率。其高效的太阳能-电能和光热蒸发能力表明,具有超高吸收率、简单制造和易于修复的碳吸收体在实际淡水生产和发电方面具有巨大的潜力。

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