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首页> 外文期刊>ACS applied materials & interfaces >Superior Flame-Resistant Cellulose Nanofibril Aerogels Modified with Hybrid Layer-by-Layer Coatings
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Superior Flame-Resistant Cellulose Nanofibril Aerogels Modified with Hybrid Layer-by-Layer Coatings

机译:优质阻燃纤维素纳米纤维气凝胶与杂交层逐层涂层改性

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摘要

Nanometer thin films consisting of cationic chitosan (Ch), anionic poly(vinylphosphonic acid) (PVPA), and anionic montmorillonite clay (MMT) are deposited on highly porous, wet-stabilized cellulose nanofibril (CNF) aerogels via the layer-by-layer (LbL) technique. Model experiments with silicon oxide surfaces are used to study the details of LbL formation and the multilayer structure. Formation of layers on the aerogels is also investigated as a function of solution concentration by use of polyelectrolyte titration. Thermogravimetric analysis indicates that the LbL coating significantly improves thermal stability of the CNF aerogel. Horizontal flame test shows that aerogels coated with five quadlayers of Ch/PVPA/Ch/MMT, using solutions/dispersion of high concentration, are able to self-extinguish immediately after removal of flame, and LbL-coated aerogels do not ignite under heat flux (35 kW/m(2)) in cone calorimetry. The LbL-coated aerogel can prevent flame penetration from a torch focused on the surface, achieving temperature drops up to 650 degrees C across the 10 mm thick specimen for several minutes. LbL treatment is hence a rapid and highly effective way to specifically tailor the surface properties of CNF aerogels in order to confer unprecedented flame-retardant characteristics.
机译:由阳离子壳聚糖(CH),阴离子聚(乙烯基膦酸)(PVPA)组成的纳米薄膜和阴离子蒙脱石粘土(MMT)沉积在高度多孔,湿稳定的纤维素纳米纤维(CNF)气凝虫上通过层沉积(LBL)技术。氧化硅表面的模型实验用于研究LBL形成和多层结构的细节。还通过使用聚电解质滴定来研究空气凝胶上的层的形成。热重分析表明LBL涂层显着提高了CNF气凝胶的热稳定性。水平火焰测试表明,使用高浓度的溶液/分散体涂有五个四层的气凝胶,能够在去除火焰后立即自熄,并且LBL涂层的气凝胶不会在热通量下点燃(锥形量热法中)(35kW / m(2))。 LBL涂覆的气凝胶可以防止来自聚焦在表面上的火炬的火焰渗透,在10mm厚的样品上达到650℃的温度降低几分钟。因此,LBL治疗是一种特异性地定制CNF气凝胶的表面性质的快速且高效的方法,以赋予前所未有的阻燃特性。

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