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受生物启发的、高附着力、纳米结构的聚合物涂层,用于超疏水灭火隔热泡沫。

Bioinspired, Highly Adhesive, Nanostructured Polymeric Coatings for Superhydrophobic Fire-Extinguishing Thermal Insulation Foam.

机构信息

School of Engineering, Zhejiang A & F University, Hangzhou 311300, China.

College of Physics, Henan Normal University, Xinxiang 453007, China.

出版信息

ACS Nano. 2021 Jul 27;15(7):11667-11680. doi: 10.1021/acsnano.1c02254. Epub 2021 Jun 25.

DOI:10.1021/acsnano.1c02254
PMID:34170679
Abstract

Lightweight polymeric foam is highly attractive as thermal insulation materials for energy-saving buildings but is plagued by its inherent flammability. Fire-retardant coatings are suggested as an effective means to solve this problem. However, most of the existing fire-retardant coatings suffer from poor interfacial adhesion to polymeric foam during use. In nature, snails and tree frogs exhibit strong adhesion to a variety of surfaces by interfacial hydrogen-bonding and mechanical interlocking, respectively. Inspired by their adhesion mechanisms, we herein rationally design fire-retardant polymeric coatings with phase-separated micro/nanostructures a facile radical copolymerization of hydroxyethyl acrylate (HEA) and sodium vinylsulfonate (VS). The resultant waterborne poly(VS--HEA) copolymers exhibit strong interfacial adhesion to rigid polyurethane (PU) foam and other substrates, better than most of the current adhesives because of the combination of interfacial hydrogen-bonding and mechanical interlocking. Besides a superhydrophobic feature, the poly(VS--HEA)-coated PU foam can self-extinguish a flame, exhibiting a desired V-0 rating during vertical burning and low heat and smoke release due to its high charring capability, which is superior to its previous counterparts. Moreover, the foam thermal insulation is well-preserved and agrees well with theoretical calculations. This work offers a facile biomimetic strategy for creating advanced adhesive fire-retardant polymeric coatings for many flammable substrates.

摘要

轻量聚合物泡沫作为节能建筑的隔热材料极具吸引力,但却存在固有易燃性的问题。因此,人们提出阻燃涂层是解决这个问题的有效手段。然而,大多数现有的阻燃涂层在使用过程中与聚合物泡沫的界面附着力都很差。在自然界中,蜗牛和树蛙通过界面氢键和机械互锁分别对各种表面表现出很强的附着力。受其粘附机制的启发,我们在此通过羟乙基丙烯酸酯(HEA)和乙烯基磺酸钠(VS)的自由基共聚,合理设计了具有相分离微/纳米结构的阻燃聚合物涂层。所得的水性聚(VS-HEA)共聚物与硬质聚氨酯(PU)泡沫和其他基底具有很强的界面附着力,优于大多数现有粘合剂,这是由于界面氢键和机械互锁的结合。除了超疏水性特征外,聚(VS-HEA)涂层的 PU 泡沫可以自熄火焰,在垂直燃烧时表现出理想的 V-0 等级,并且由于其高炭化能力而具有低热和低烟释放,优于其先前的同类产品。此外,泡沫的隔热性能保持良好,与理论计算吻合较好。这项工作为许多易燃基底的先进的粘附性阻燃聚合物涂层提供了一种简单的仿生策略。

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