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Cu3BiS3/MXenes with Excellent Solar-Thermal Conversion for Continuous and Efficient Seawater Desalination

机译:CU3BIS3 / MXENS具有出色的太阳能热转换,可用于连续和高效的海水淡化

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摘要

Two-dimensional materials with unique physical and chemical properties have recently attracted widespread attention in the field of solar thermal conversion. However, affected by the Fresnel effect, traditional two-dimensional materials such as MXenes, graphene, transition metal disulfide often have relatively significant light reflection losses at the solid-liquid or gas interface. So how to improve the light absorption of the two-dimensional material performance has become a new challenge in photothermal conversion. Here, we use an improved thermal-injection method to uniformly grow Tricopper(I) Bismuth Sulfide (Cu3BiS3, CBS) on the surface of Ti3C2 nanosheets in a nonaqueous polar solvent environment. A three-dimensional nanoflower-nanosheet structure CBS-Ti3C2 for photothermal conversion has been constructed successfully. Owing to the excellent photothermal performance of Cu3BiS3 in the near-infrared region, the good thermal conductivity of Ti3C2, and the unique porous structure of the composite material, the composite achieves broadband absorption of light (more than 90% in the visible light region, more than 80% in the near-infrared region), which optical model and finite element simulation have theoretically verified. The composite material has obtained higher solar-to-heat conversion performance than similar material systems, and the steady-state temperature can reach 62.3 degrees C under 1 sun incident light intensity. CBS-Ti3C2 is expected to become a light-absorbing layer material for solar vapor generation devices due to its excellent light-to-heat conversion performance and good material flexibility. It still guarantees a reasonably high steam generation rate (1.32 kg.m(-2).h(-1)) even with a thinner material thickness (0.48 mg.cm(-2)) and a comprehensive conversion efficiency higher than 90%. Besides, CBS-Ti3C2 also exhibits the characteristics of resisting surface salt accumulation, which is conducive to maintaining the long-lasting photothermal seawater evaporation process. The material's electronic structure and the charge transfer process of the heterojunction interface have been studied with the first-principles calculation. The high light absorption performance and good thermal conductivity of the composite material are theoretically explained and supported.
机译:二维材料具有独特的物理和化学性质,近年来在太阳能热转换领域受到广泛关注。然而,受菲涅耳效应的影响,传统的二维材料,如MXenes、石墨烯、过渡金属二硫化物等,往往在固液或气体界面处存在相对显著的光反射损耗。因此,如何提高二维材料的光吸收性能成为光热转换领域的一个新挑战。在这里,我们使用一种改进的热注入方法,在非水极性溶剂环境中在Ti3C2纳米片表面上均匀生长三铜(I)硫化铋(Cu3BiS3,CBS)。成功构建了用于光热转换的三维纳米花纳米片结构CBS-Ti3C2。由于Cu3BiS3在近红外区域具有优异的光热性能,Ti3C2具有良好的导热性,以及复合材料独特的多孔结构,该复合材料实现了宽带光吸收(在可见光区域超过90%,在近红外区域超过80%),其中光学模型和有限元模拟从理论上得到了验证。与同类材料相比,该复合材料具有更高的太阳能热转换性能,在1个太阳入射光强度下,稳态温度可达62.3℃。CBS-Ti3C2具有优良的光热转换性能和良好的材料柔韧性,有望成为太阳能蒸汽发生装置的光吸收层材料。它仍然保证了相当高的蒸汽生成率(1.32 kg.m(-2)。h(-1)),即使材料厚度较薄(0.48 mg.cm(-2)),综合转化效率也高于90%。此外,CBS-Ti3C2还具有抗表面盐分积累的特性,这有助于维持海水的长期光热蒸发过程。用第一性原理计算研究了材料的电子结构和异质结界面的电荷转移过程。从理论上解释和支持了复合材料的高光吸收性能和良好的导热性。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2021年第14期|共13页
  • 作者单位

    East China Normal Univ Dept Elect Key Lab Polar Mat &

    Devices MOE Shanghai 200241 Peoples R China;

    East China Normal Univ Dept Elect Key Lab Polar Mat &

    Devices MOE Shanghai 200241 Peoples R China;

    East China Normal Univ Dept Elect Key Lab Polar Mat &

    Devices MOE Shanghai 200241 Peoples R China;

    East China Normal Univ Dept Elect Key Lab Polar Mat &

    Devices MOE Shanghai 200241 Peoples R China;

    East China Normal Univ Dept Elect Key Lab Polar Mat &

    Devices MOE Shanghai 200241 Peoples R China;

    East China Normal Univ Dept Elect Key Lab Polar Mat &

    Devices MOE Shanghai 200241 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Cu3BiS3; MXene; Ti3C2; solar-thermal conversion; seawater desalination;

    机译:Cu3BiS3;MXene;Ti3C2;太阳能热转换;海水淡化;

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