Santos Leandra P, da Silva Douglas S, Morari Thais H, Galembeck Fernando
Galembetech Consultores e Tecnologia Ltda., Campinas 13080-661, Brazil.
Department of Physical Chemistry, Institute of Chemistry, University of Campinas, Campinas 13083-970, Brazil.
Polymers (Basel). 2021 Jul 22;13(15):2400. doi: 10.3390/polym13152400.
Many materials and additives perform well as fire retardants and suppressants, but there is an ever-growing list of unfulfilled demands requiring new developments. This work explores the outstanding dispersant and adhesive performances of cellulose to create a new effective fire-retardant: exfoliated and reassembled graphite (ERG). This is a new 2D polyfunctional material formed by drying aqueous dispersions of graphite and cellulose on wood, canvas, and other lignocellulosic materials, thus producing adherent layers that reduce the damage caused by a flame to the substrates. Visual observation, thermal images and surface temperature measurements reveal fast heat transfer away from the flamed spots, suppressing flare formation. Pinewood coated with ERG underwent standard flame resistance tests in an accredited laboratory, reaching the highest possible class for combustible substrates. The fire-retardant performance of ERG derives from its thermal stability in air and from its ability to transfer heat to the environment, by conduction and radiation. This new material may thus lead a new class of flame-retardant coatings based on a hitherto unexplored mechanism for fire retardation and showing several technical advantages: the precursor dispersions are water-based, the raw materials used are commodities, and the production process can be performed on commonly used equipment with minimal waste.
许多材料和添加剂作为阻燃剂和抑制剂表现良好,但未满足的需求清单却在不断增加,这就需要新的研发成果。这项工作探索了纤维素出色的分散和粘合性能,以创造一种新型高效阻燃剂:剥离并重新组装的石墨(ERG)。这是一种新型二维多功能材料,通过在木材、帆布和其他木质纤维素材料上干燥石墨和纤维素的水分散体而形成,从而产生粘附层,减少火焰对基材造成的损害。目视观察、热成像和表面温度测量表明,热量能快速从着火点转移出去,抑制火焰形成。涂有ERG的松木在认可的实验室进行了标准阻燃测试,达到了可燃基材的最高等级。ERG的阻燃性能源于其在空气中的热稳定性以及通过传导和辐射将热量传递到环境中的能力。这种新材料可能会引领一类基于迄今未探索的阻燃机制的新型阻燃涂料,并展现出几个技术优势:前体分散体是水基的,使用的原材料是常见商品,生产过程可在常用设备上进行,且废弃物最少。