首页> 外文OA文献 >Preparation and Characterization of UV-LED Curable Acrylic Films Containing Biochar and/or Multiwalled Carbon Nanotubes: Effect of the Filler Loading on the Rheological, Thermal and Optical Properties
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Preparation and Characterization of UV-LED Curable Acrylic Films Containing Biochar and/or Multiwalled Carbon Nanotubes: Effect of the Filler Loading on the Rheological, Thermal and Optical Properties

机译:含有BioChar和/或多壁碳纳米管的UV-LED可固化丙烯酸膜的制备与表征:填料载荷对流变,热和光学性质的影响

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摘要

UV-LED curable coatings represent an up-to-date attractive field due to the high curing efficiency even in the presence of high filler loadings, as well as to the absence of infrared wavelengths that may negatively impact on heat-sensitive substrates. The addition of carbonaceous materials, such as biochar (BC) and/or multiwalled carbon nanotubes (MWCNTs) could positively improve both the rheological and thermal properties. In this study we report on the synthesis and characterization of carbon-reinforced films containing nanometric (MWCNTs) and micrometric (BC) carbon-based materials. We analyze the rheological properties of the UV-LED curable dispersions, as well as the thermal and optical properties of the resulting films, establishing some correlations between filler dispersion/loading with the main observed properties.
机译:UV-LED可固化涂层代表最新的有吸引力的场,即使在高填充载荷的情况下也具有高固化效率,以及不存在对热敏衬底产生负面影响的红外波长。添加碳质材料,例如生物炭(Bc)和/或多壁碳纳米管(MWCNT)可以肯定地改善流变和热性能。在这项研究中,我们报告了含有纳米(MWCNT)和微米(BC)碳基材料的碳增强膜的合成和表征。我们分析UV-LED可固化分散体的流变性能,以及所得薄膜的热和光学性质,在填充分散/载荷与主要观察性质之间建立一些相关性。

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