首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Nanoporous silica microspheres-ploymethylpentene (TPX) hybrid films toward effective daytime radiative cooling
【24h】

Nanoporous silica microspheres-ploymethylpentene (TPX) hybrid films toward effective daytime radiative cooling

机译:纳米多孔二氧化硅微球 - 植物甲基戊烯(TPX)杂种薄膜朝向有效的白天辐射冷却

获取原文
获取原文并翻译 | 示例
           

摘要

The metamaterial radiative cooling films based on nanoporous SiO2 microsphere-Poly-4-methyl-1-pentene (TPX) hybrid system were deposited on fluorine doped tin oxide (Fro) substrates via tape casting. Effects of the fabrication parameters, film thickness, SiO2/TPX volumetric ratio and microsphere size on the crystallinity, microstructure, optical transmittance and infrared emittance of the hybrid films were examined. Results show that the crystallinity of the TPX matrix is influenced by the deposition temperature, and the microstructure of the hybrid film is influenced by the film thickness, with the film of 50 mu m thickness exhibiting porous microstructure on the surface. The optical transmittance in the visible-near infrared band decreases with the increase of the film thickness and the SiO2/TPX volumetric ratio, and with the decrease of the microsphere size. The absolute quantity of SiO2 microspheres in hybrid film determines the transmittance and the scattering effect. The emittance at 8-13 mu m increases with the increase of the film thickness and the SiO2/TPX ratio and with the decrease of microsphere size. The film with 50 mu m thickness, 5% SiO2/TPX ratio and 8 mu m microspheres exhibits both high emittance (up to 0.91) and high selectivity in the atmospheric window. The cooling device integrating the optimal hybrid film and silver reflective layer demonstrates the lowest temperature in the diurnal test, about 20 degrees C lower than the black surface, 12 degrees C lower than the Ag-coated glass and 8 degrees C lower than the FTO sample. In the nocturnal test, the maximum 4.5 degrees C reduction relative to the ambient temperature is observed.
机译:基于纳米多孔SiO2微球 - 聚-4-甲基-1-戊烯(TPX)杂交系统的超材料辐射冷却膜沉积在氟掺杂的氧化锡(来自)基材上通过带铸造。研究了制造参数,膜厚度,SiO2 / TPX体积比和微球尺寸对结晶性,微观结构,光学透射率和红外线射线的影响。结果表明,TPX基质的结晶度受到沉积温度的影响,杂交膜的微观结构受膜厚度的影响,其中50μm厚的膜在表面上表现出多孔微观结构。可见近红外带中的光学透射率随着膜厚度和SiO 2 / TPX体积比的增加而降低,并且随着微球尺寸的降低而降低。混合膜中的SiO2微球的绝对量决定了透射率和散射效果。 8-13μm的发射率随着膜厚度的增加和SiO 2 / TPX比率和微球尺寸的降低而增加。厚度为50μm,5%SiO 2 / TPX比和8μm微球的薄膜在大气窗口中表现出高发射率(高达0.91)和高选择性。整合最佳混合膜和银反射层的冷却装置表现出昼夜试验中的最低温度,比黑色表面低约20℃,比Ag涂层玻璃低12℃,低于FTO样品的8℃ 。在夜间测试中,观察到相对于环境温度的最大4.5度C.

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号