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首页> 外文期刊>Journal of the Chemical Society of Pakistan >Graphene Nanoplates Filled Nylon 6,6 Nanocomposites, Morphological, Thermal, Mechanical and Solvent Uptake Study
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Graphene Nanoplates Filled Nylon 6,6 Nanocomposites, Morphological, Thermal, Mechanical and Solvent Uptake Study

机译:石墨烯纳米板填充尼龙6,6纳米复合材料,形态学,热,机械和溶剂吸收研究

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摘要

Effect of graphene nanoplates (GNPs) on the properties of Nylon 6,6 (Nyl 6,6) is investigated in present study. The morphological studies presented that the GNPs were dispersed inside the Nyl 6,6 matrix. The thermo gravimetric analysis (TGA) illustrated that the thermal degradation of nanocomposites samples were started at the range of 350-393 degrees C, which was appreciably higher than neat Nyl 6,6 (360 degrees C). The differential scanning calorimetry (DSC) analyses revealed that the crystallization temperature (Tc) of GNPs/Nyl 6,6 increased as increased the addition of GNPs, which might be due to the nucleation effect of GNPs. The mechanical properties of Nyl 6,6 was enhanced by incorporation of GNPs upto the addition of an optimal quantity of filler (5%wt GNPs) into the polymer matrix. The stress yield and Young's modulus of 5%wt GNPs/Nyl 6,6 was 96.79 and 1.54, N/nm(2), respectively. Both Nyl 6,6 and nanocomposites samples were also used for the adsorption of Neutral red chloride (NRC) dye, which significantly remove the dye from the aqueous solution. The neat nylon 6,6 and GNPs (5 and 10 wt%)/Nyl 6,6 adsorbed about 88.49, 93.15, and 93.60% within 2 h, respectively.
机译:本研究研究了石墨烯纳米板(GNPS)对尼龙6,6(尼基6,6)性能的影响。形态学研究表明,将GNP分散在尼尼6,6基质内。所示的热重量分析(TGA)示出了纳米复合材料样品的热劣化在350-393℃的范围内,其明显高于整齐的尼尼(360℃)。差分扫描量热法(DSC)分析显示,GNPS / NYL的结晶温度(TC)增加,随着GNP的增加增加,这可能是由于GNP的成核效应。通过将GNP加入到聚合物基质中加入最佳量的填料(5%wt gnps),通过将GNP加入聚合物基质中的最佳填料(5%wt gnps)来增强尼基的力学性能。应力产量和杨氏模量为5%wt gnps / nyl 6,6分别为96.79和1.54,n / nm(2)。奈基6,6和纳米复合材料样品也用于吸附中性丁酰氯(NRC)染料,从而显着地从水溶液中除去染料。整齐的尼龙6,6和GNPS(5和10wt%)/邻尼基分别吸附在2小时内约88.49,93.15和93.60%。

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