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辐射冷却:薄膜涂层中的晶格量子化和表面发射率。

Radiative cooling: lattice quantization and surface emissivity in thin coatings.

机构信息

Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, Illinois 60115, USA.

出版信息

ACS Appl Mater Interfaces. 2009 Jun;1(6):1334-8. doi: 10.1021/am900200r.

Abstract

Nanodiamond powder (NDP), multiwall carbon nanotube (MWCNT), and carbon black (CB) were dispersed in an acrylate (AC) emulsion to form composite materials. These materials were coated on aluminum panels (alloy 3003) to give thin coatings. The active phonons of the nanomaterials were designed to act as a cooling fan, termed "molecular fan (MF)". The order of lattice quantization, as investigated by Raman spectroscopy, is MWCNT > CB >> NDP. The enhanced surface emissivity of the MF coating (as observed by IR imaging) is well-correlated to lattice quantization, resulting in a better cooling performance by the MWCNT-AC composite. MF coatings with different concentrations (0%, 0.4%, 0.7%, and 1%) of MWCNT were prepared. The equilibrium temperature lowering of the coated panel was observed with an increase in the loading of CNTs and was measured as 17 degrees C for 1% loading of MWCNT. This was attributed to an increased density of active phonons in the MF coating.

摘要

纳米金刚石粉末(NDP)、多壁碳纳米管(MWCNT)和炭黑(CB)分散在丙烯酸酯(AC)乳液中形成复合材料。这些材料涂覆在铝板(合金 3003)上形成薄涂层。纳米材料的活性声子被设计为充当冷却风扇,称为“分子风扇(MF)”。通过拉曼光谱研究晶格量子化的顺序为 MWCNT > CB >> NDP。MF 涂层的增强表面发射率(如通过红外成像观察到的)与晶格量子化密切相关,导致 MWCNT-AC 复合材料具有更好的冷却性能。制备了具有不同浓度(0%、0.4%、0.7%和 1%)MWCNT 的 MF 涂层。随着 CNT 负载的增加,观察到涂覆面板的平衡温度降低,并测量到 1% MWCNT 负载时为 17°C。这归因于 MF 涂层中活性声子密度的增加。

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