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Impact of Layer-by-Layer Self-Assembly Clay-Based Nanocoating on Flame Retardant Properties of Sisal Fiber Cellulose Microcrystals

机译:逐层自组装粘土基纳米晶体对Sisal纤维纤维素微晶阻燃性能的影响

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摘要

The renewable cationic polyelectrolyte chitosan (CH) and anionic nanomontmorillonite (MMT) layers were alternately deposited on the surface of sisal fiber cellulose microcrystals (SFCM) via layer-by-layer (LBL) self-assembly method. The structure and properties of the composites were characterized by zeta potential, thermal gravimetric analysis (TGA), X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), Fourier transform infrared spectrometer (FTIR), microcalorimeter (MCC), and so forth. The zeta potential results show that the cellulose microcrystalline surface charge reversed due to the adsorption of CH and MMT nanoplatelets during multilayer deposition. MMT characteristic diffraction peaks appear in XRD patterns of SFCM(CH/MMT)5 and SFCM(CH/MMT)10 composites. Additionally, FESEM reveals that the SFCM(CH/MMT)10 surface is covered with a layer of material containing Si, which has been verified by elemental analysis. TGA results show that the initial decomposition (weight loss of 5%) temperature of SFCM(CH/MMT)5 is increased by 4°C compared to that of pure SFCM. On the other hand, carbon residue percentage of SFCM(CH/MMT)10 is 25.1%, higher than that of pure SFCM (5.4%) by 19.7%. Eventually, it is testified by MCC measurement that CH/MMT coating can significantly reinforce the flame retardant performance of SFCM.
机译:可再生阳离子聚电解质壳聚糖(CH)和阴离子纳米ONTORONITE(MMT)层交替地沉积在Sisal纤维纤维素微晶(SFCM)的表面上通过层(LBL)自组装方法。复合材料的结构和性质的特征在于Zeta电位,热重分析(TGA),X射线衍射(XRD),场发射扫描电子显微镜(FESEM),傅里叶变换红外光谱仪(FTIR),微量微量计(MCC),等等。 Zeta电位结果表明,由于在多层沉积期间CH和MMT纳米孔的吸附,纤维素微晶表面电荷反转。 MMT特性衍射峰出现在SFCM(CH / MMT)5和SFCM(CH / MMT)10复合材料的XRD图案中。另外,FESEM显示SFCM(CH / MMT)10表面覆盖有含有Si的材料层,该材料已经通过元素分析验证。 TGA结果表明,与纯SFCM相比,SFCM(CH / MMT)5的初始分解(5%)温度增加4℃。另一方面,SFCM(CH / MMT)10的碳残留率为25.1%,高于纯SFCM(5.4%)的25.1%(5.4%)。最终,通过MCC测量来证明CH / MMT涂层可以显着增强SFCM的阻燃性能。

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