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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Synthesis of polypropylene/Mg3Al-X (X = CO3~(2-), NO3~(2-), Cl~-, SO4~(2-)) LDH nanocomposites using a solvent mixing method: thermal and melt rheological properties
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Synthesis of polypropylene/Mg3Al-X (X = CO3~(2-), NO3~(2-), Cl~-, SO4~(2-)) LDH nanocomposites using a solvent mixing method: thermal and melt rheological properties

机译:使用溶剂混合法合成聚丙烯/ Mg3Al-X(X = CO3〜(2-),NO3〜(2-),Cl〜-,SO4〜(2-))LDH纳米复合材料:热和流变特性

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摘要

In this contribution, polypropylene (PP) nanocomposites with four different inorganic anion (CO3~(2-), NO3~ Cl~, and SO4~(2-)) intercalated Mg3AI layered double hydroxides (LDHs) as nanofillers were prepared using a solvent mixing method for the first time. The influence of interlayer inorganic anions on the thermal stability, melting and recrystallisation behavior and rheological property of PP was then systematically compared. The thermal stability was significantly improved, with Mg3AI-CO3 and Mg3AI-CI LDHs, and T_(0.5) increased by about 44 °C compared to pure PP. The incorporation of LDHs increased the melting temperature (T_m) ahd the recrystallization temperature (T_c) of PP by about 3-4 °C and 10-13 °C, respectively. The influence on the storage modulus (G') and loss modulus (G") follows the order of Mg3AI-SO4 >Mg3Al-NO3 >Mg3AI-CO3 >Mg3AI-CI. Although the incorporation of all LDHs led to an improvement in the thermal stability, T_m, T_a G', G", and complex viscosity of PP/Mg3AI-X LDH nanocomposites, the extent of changes varied with the type of inter-layer anions. The study finally demonstrated that even very similar inorganic anions such as CO3~(2-), NO3~-, Cl~, and SO4~(2-) could lead to a significant difference in the property of the synthesized PP/LDH nanocomposites, and it must be taken into account for the future design of polymer/LDH nanocomposites.
机译:在这一贡献中,使用溶剂制备了具有四种不同无机阴离子(CO3〜(2-),NO3〜Cl〜和SO4〜(2-)插层的Mg3Al层状双氢氧化物(LDHs)的聚丙烯(PP)纳米复合材料。首次混合方法。然后系统地比较了层间无机阴离子对聚丙烯的热稳定性,熔融和重结晶行为以及流变性的影响。与纯PP相比,Mg3Al-CO3和Mg3AI-CI LDHs的热稳定性得到显着改善,并且T_(0.5)提高了约44°C。 LDH的引入分别使PP的熔融温度(T_m)和重结晶温度(T_c)分别提高了约3-4°C和10-13°C。对储能模量(G')和损耗模量(G“)的影响依次为Mg3Al-SO4> Mg3Al-NO3> Mg3AI-CO3> Mg3AI-CI。尽管所有LDH的引入均导致了热学上的改善。 PP / Mg3Al-X LDH纳米复合材料的稳定性,T_m,T_a G',G“和复数粘度,变化程度随层间阴离子的类型而变化。研究最终表明,即使是非常相似的无机阴离子,例如CO3〜(2-),NO3〜-,Cl〜和SO4〜(2-),也可能导致合成的PP / LDH纳米复合材料的性能产生显着差异,在将来聚合物/ LDH纳米复合材料的设计中必须考虑到这一点。

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