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首页> 外文期刊>Advanced energy materials >Superwetting Monolithic Hollow-Carbon-Nanotubes Aerogels with Hierarchically Nanoporous Structure for Efficient Solar Steam Generation
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Superwetting Monolithic Hollow-Carbon-Nanotubes Aerogels with Hierarchically Nanoporous Structure for Efficient Solar Steam Generation

机译:超雨量整体空心 - 碳 - 纳米管气凝胶,具有阶级纳米多孔结构,用于高效的太阳能蒸汽发电

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摘要

Solar steam generation has been proven to be one of the most efficient approaches for harvesting solar energy for diverse applications such as distillation, desalination, and production of freshwater. Here, the synthesis of monolithic carbon aerogels by facile carbonization of conjugated microporous polymer nanotubes as efficient solar steam generators is reported. The monolithic carbon-aerogel networks consist of randomly aggregated hollow-carbon-nanotubes (HCNTs) with 100-250 nm in diameter and a length of up to several micrometers to form a hierarchically nanoporous network structure. Treatment of the HCNTs aerogels with an ammonium peroxydisulfate/sulfuric acid solution endows their superhydrophilic wettability which is beneficial for rapid transportation of water molecules. In combination with their abundant porosity (92%) with open channel structure, low apparent density (57 mg cm(-3)), high specific surface area (826 m(2) g(-1)), low thermal conductivity (0.192 W m(-1) K-1), and broad light absorption (99%), an exceptionally high conversion efficiency of 86.8% is achieved under 1 sun irradiation, showing great potential as an efficient photothermal material for solar steam generation. The findings may provide a new opportunity for tailored design and creation of new carbon-aerogels-based photothermal materials with adjustable structure, tunable porosity, simple fabrication process, and high solar energy conversion efficiency for solar steam generation.
机译:已被证明是太阳能蒸汽发电是为多元化应用收获太阳能的最有效方法之一,例如淡水的蒸馏,脱盐和生产。这里,报道了作为高效太阳能蒸汽发生器的共轭微孔聚合物纳米管的容易碳化来合成整体碳气孔。整体碳 - 气凝胶网络由直径100-250nm的随机聚集的中空 - 碳 - 纳米管(HCNT)组成,长度高达几微米,以形成分层纳米多孔网络结构。用铵过氧硫酸铵/硫酸溶液处理HCNTs气凝胶赋予它们的过性过水性润湿性,这有利于水分子的快速运输。结合其丰富的孔隙率(92%),具有开放通道结构,表观密度低(57mg cm(-3)),高比表面积(826米(2)g(-1)),导热率低(0.192 W M(-1)k-1)和宽光吸收(99%),在1次防晒下实现86.8%的异常高转化效率,显示出巨大的太阳能蒸汽产生的有效光热材料潜力。该调查结果可以为具有可调节结构,可调谐孔隙,简单的制造工艺和高太阳能转换效率的定制设计和创建新的碳 - 气凝胶基光热材料的设计和创造新的机会。

著录项

  • 来源
    《Advanced energy materials 》 |2019年第1期| 1802158.1-1802158.9| 共9页
  • 作者单位

    Lanzhou Univ Technol Coll Petrochem Engn Dept Chem Engn Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol Coll Petrochem Engn Dept Chem Engn Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol Coll Petrochem Engn Dept Chem Engn Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol Coll Petrochem Engn Dept Chem Engn Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol Coll Petrochem Engn Dept Chem Engn Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol Coll Petrochem Engn Dept Chem Engn Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol Coll Petrochem Engn Dept Chem Engn Lanzhou 730050 Gansu Peoples R China;

    Lanzhou Univ Technol Coll Petrochem Engn Dept Chem Engn Lanzhou 730050 Gansu Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aerogels; conjugated microporous polymers; nanotubes; solar steam generation;

    机译:气凝胶;共轭微孔聚合物;纳米管;太阳能蒸汽发电;

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