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Novel Biobased Nanocomposites from Soybean Oil and Functionalized Organoclay

机译:豆油和功能化有机粘土的新型生物基纳米复合材料

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Novel biobased nanocomposites have been prepared by the cationic polymerization of conjugated soybean oil (CSOY) or conjugated LoSatSoy oil (CLS) with styrene (ST) and divinylbenzene (DVB),and a reactive organomodified montmorillonite (VMMT) clay as a reinforcing phase.This filler has been prepared by the cationic exchange of sodium montmorillonite with (4-vinylbenzyl)triethylammonium chloride in aqueous solution.The nanostructures of the nanocomposites have been determined by using wide-angle X-ray diffraction (WAXD) and transmission electron microscopy (TEM),respectively.The results from WAXD and TEM indicate that a heterogeneous structure consisting of intercalation and partial exfoliation or an intercalation structure exists in the nanocomposites,depending on the amount of VMMT in the polymer matrix.The thermal,mechanical,and organic vapor barrier properties of the nanocomposites have been evaluated by dynamic thermal analysis,thermogravimetric analysis,mechanical testing,and toluene absorption.A significant improvement is observed in the thermal stability,the dynamic bending storage modulus,the compressive modulus,the compressive strength,the compressive strain at failure,and the vapor barrier performance for the CSOY-and CLS-based nanocomposites with 1-2 wt % VMMT loading,where some individual exfoliated silicate platelets occur.For example,the CLS-based nanocomposite with 1-2 wt % VMMT exhibits increases of 100-128%,86-92%,and 5-7% in compressive modulus,compressive strength,and compressive strain at failure,respectively.CLS with higher unsaturation and reactivity affords nanocomposites with higher thermal stability and higher mechanical properties than CSOY.
机译:新型生物基纳米复合材料是通过共轭大豆油(CSOY)或共轭LoSatSoy油(CLS)与苯乙烯(ST)和二乙烯基苯(DVB)以及活性有机改性蒙脱土(VMMT)粘土作为增强相的阳离子聚合反应而制备的。蒙脱土钠与(4-乙烯基苄基)三乙基氯化铵在水溶液中的阳离子交换制备了填充剂,并利用广角X射线衍射(WAXD)和透射电子显微镜(TEM)确定了纳米复合材料的纳米结构。 WAXD和TEM的结果表明,取决于聚合物基体中VMMT的量,纳米复合材料中存在由插层和部分剥落组成的异质结构或插层结构,这取决于聚合物基质中的VMMT量。热,机械和有机蒸汽阻隔性能通过动态热分析,热重分析,机械测试和甲苯评估了纳米复合材料的含量CSOY和CLS基纳米复合材料的热稳定性,动态弯曲储能模量,压缩模量,抗压强度,破坏时的压缩应变以及阻气性能均得到了显着改善。 VMMT加载量为2 wt%,其中会出现一些片状脱落的硅酸盐血小板。例如,VMMT含量为1-2 wt%的CLS基纳米复合材料的压缩模量提高了100-128%,86-92%和5-7%具有更高的不饱和度和反应性的CLS所提供的纳米复合材料比CSOY具有更高的热稳定性和更高的机械性能。

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