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Effects of Graphite Oxide Nanoparticle Size on the Functional Properties of Layer-by-Layer Coated Flexible Foams

机译:石墨氧化物纳米粒径对逐层涂层柔​​性泡沫功能性能的影响

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摘要

The exploitation of self-assembled coatings comprising graphite oxide (GO) nanoplates has been recently demonstrated as a promising route to improve the fire safety of flexible polyurethane (PU) foams. However, limited knowledge has been gathered on the correlations between the physical and chemical properties of different GO grades and the performance obtained in this application. This work addresses the effects of the nanoparticle dimensions on the layer-by-layer (LbL) assembly and flame-retardant properties of GO-based coatings deposited on PU foams. To this aim, three GO bearing different lateral sizes and thicknesses were selected and LbL-assembled with chitosan (CHIT). Coating growth and morphology were evaluated by FTIR and FESEM, respectively. The resulting CHIT/GO assemblies were demonstrated to be capable of slowing down the combustion of the PU both in flammability and forced combustion tests. In addition, compressive stress/strain tests pointed out that the LbL-coated foams (22–24 kg/m3) could easily replace denser commercial PU foam (40–50 kg/m3) with weight reduction potentials in the transport field. These results are correlated with the properties of the employed GO. The production of assemblies characterized by a high density of CHIT/GO interfaces is identified as the main parameter controlling the FR efficiency and the mechanical properties of the coatings.
机译:最近已经证明了包含石墨氧化物(GO)纳米层的自组装涂层的开发作为提高柔性聚氨酯(PU)泡沫的火灾安全性的有希望的途径。然而,已经收集了有限的知识,并在不同GO等级的物理和化学性质与本申请中获得的性能之间的相关性。该工作地解决了纳米颗粒尺寸对沉积在PU泡沫上的逐层(LBL)组件的逐层(LBL)组件和阻燃性能。为此目的,选择三个轴承不同的横向尺寸和厚度,并用壳聚糖(Chit)组装。通过FTIR和FESEM评估涂层生长和形态。得到了所得的Chit / Go组件,可以在易燃性和强制燃烧试验中减缓PU的燃烧。此外,压缩应力/应变试验指出,LBL涂覆的泡沫(22-24kg / m 3)可以容易地用运输场中的重量减轻电位替代更浓度的商业PU泡沫(40-50kg / m3)。这些结果与所采用的性质相关联。以高密度的CHIT / GO接口为特征的组件的产生被识别为控制FR效率和涂层的机械性能的主参数。

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