Department of Chemical and Biomolecular Engineering, National University of Singapore, 117585, Singapore.
Department of Materials Science and Engineering, National University of Singapore, 117575, Singapore.
Small. 2018 May;14(21):e1800596. doi: 10.1002/smll.201800596. Epub 2018 Apr 22.
Flame-retardant coatings are widely used in a variety of personnel or product protection, and many applications would benefit from film stretchability if suitable materials are available. It is challenging to develop flame-retardant coatings that are stretchable, eco-friendly, and capable of being integrated on mechanically dynamic devices. Here, a concept is reported that uses pretextured montmorillonite (MMT) hybrid nanocoatings that can undergo programed unfolding to mimic the stretchability of elastomeric materials. These textured MMT coatings can be transferred onto an elastomeric substrate to achieve an MMT/elastomer bilayer device with high stretchability (225% areal strain) and effective flame retardancy. The bilayer composite is utilized as flame-retardant skin for a soft robotic gripper, and it is demonstrated that the actuated response can manipulate and rescue irregularly shaped objects from a fire scene. Furthermore, by depositing the conformal MMT nanocoatings on nitrile gloves, the firefree gloves can endure direct flame contact without ignition.
阻燃涂层广泛应用于各种人员或产品防护,许多应用如果有合适的材料,将受益于薄膜的拉伸性。开发具有拉伸性、环保且能够集成在机械动态设备上的阻燃涂层具有挑战性。在这里,报告了一种使用预处理蒙脱土(MMT)混合纳米涂层的概念,这些涂层可以进行编程展开,以模拟弹性体材料的拉伸性。这些具有纹理的 MMT 涂层可以转移到弹性体基底上,以实现具有高拉伸性(225%的面积应变)和有效阻燃性的 MMT/弹性体双层器件。该双层复合材料用作软体机器人夹持器的阻燃外皮,并且证明了致动响应可以操纵和从火灾现场抢救不规则形状的物体。此外,通过在丁腈手套上沉积保形 MMT 纳米涂层,防火手套可以耐受直接火焰接触而不被点燃。