Department of Chemical Engineering, Faculty of Chemistry and Chemical Engineering, Babes-Bolyai University, RO-400028, Cluj-Napoca, 077125, Romania.
Institute of Research-Development-Innovation in Applied Natural Sciences, Babes-Bolyai University, RO-400294, Cluj-Napoca, Romania.
J Nanosci Nanotechnol. 2021 Apr 1;21(4):2312-2322. doi: 10.1166/jnn.2021.18959.
Looking for multifunctional materials, an assessment of the performances both as fire retardant and generator of electrically conductive surfaces for a three component mixture of graphene oxide, phosphoric acid and melamine applied on wood chipboard was performed. A simple approach was used to investigate the intumescent char formation and quantify the loss mass during vertical burning tests, in which the prepared samples were exposed for a certain time interval to a flame generated by an ethanol lamp in ambient conditions. Moreover, mass loss evolution and structural changes that occur during the burning process were more comprehensive investigated by differential thermal and thermogravimetric (DTA/TGA) techniques. By comparing the performances between the wood chipboard samples without any coverage and those covered with one or multiple component mixture, an increase of protection against the fire action was noticed when the three component mixture was used. Also, an improvement of the electrical properties was observed, after flame exposure of the samples covered with multiple layers (i.e., two and three), when the three component mixture was used. Morphological and structural investigations by microscopy (optical and electronic-SEMEDX), X-ray diffraction (XRD) and spectral (Raman, FTIR) methods are described. An assessment of market potential is also discussed.
正在寻找多功能材料,对氧化石墨烯、磷酸和三聚氰胺的三组分混合物在刨花板上的应用进行了评估,评估其作为阻燃剂和导电表面生成剂的性能。采用简单的方法研究了膨胀型炭层的形成,并在垂直燃烧测试中量化了质量损失,其中将制备的样品在环境条件下暴露于乙醇灯产生的火焰一定时间间隔。此外,通过差示热分析和热重分析(DTA/TGA)技术更全面地研究了燃烧过程中发生的质量损失演变和结构变化。通过比较未覆盖任何物质的刨花板样品和覆盖有一层或多层(即两层和三层)单一或多种成分混合物的样品之间的性能,发现当使用三组分混合物时,对火灾的防护性能有所提高。此外,当使用三组分混合物时,在对覆盖有多层的样品进行火焰暴露后,观察到电性能得到了改善。通过显微镜(光学和电子扫描电子显微镜-EDX)、X 射线衍射(XRD)和光谱(拉曼、FTIR)方法进行了形貌和结构研究。还讨论了市场潜力的评估。