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A cellulose nanoarchitectonic: Multifunctional and robust superhydrophobic coating toward rapid and intelligent water-removing purpose

机译:一种纤维素纳米建筑学:多功能且鲁棒的超疏水涂层朝着快速和智能的水去除目的

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The present work deals with using thermal aggregation of spray drying to achieve uniform structuring of cellulose nanocrystals (CNC) with carbon nanotubes (CNT), for obtaining rough annular microparticles with hierarchical dual dimensions. The structure and characteristics of CNC are crucial to microparticle assembly and superhydrophobic modification. The polyurethane (PU) was used to enhance the firmness of microparticles, during thermal aggregation. The investigated CNC/CNT/PU microparticles showed excellent separation ability for water-in-oil emulsions. Moreover, an abrasion-resistant superhydrophobic coating that combined fast and intelligent water-removing, electrical-conductive and antibacterial functions was manufactured through simple spray coating, which profited from effective role of CNT in excellent conversion of light to heat, as well as its thermal, electrical conductivity and antibacterial properties.
机译:本工作涉及使用喷雾干燥的热聚集,实现纤维素纳米晶体(CNC)的均匀结构,碳纳米管(CNT),用于获得具有分级双尺寸的粗糙环形微粒。 CNC的结构和特征对微粒组装和超疏水改性至关重要。 在热聚集期间,使用聚氨酯(PU)来增强微粒的固体性。 研究的CNC / CNT / PU微粒显示出优异的水包油乳液的分离能力。 此外,通过简单的喷涂制造快速和智能去除水去除,导电和抗菌功能的耐磨超疏水涂层,其利用CNT的有效作用,以优异的光转化为热量,以及其热量 ,导电性和抗菌性质。

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