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Graphene Based Poly(Vinyl Alcohol) Nanocomposites Prepared by In Situ Green Reduction of Graphene Oxide by Ascorbic Acid: Influence of Graphene Content and Glycerol Plasticizer on Properties

机译:抗坏血酸原位绿色还原氧化石墨烯制备的石墨烯基聚乙烯醇纳米复合材料:石墨烯含量和甘油增塑剂对性能的影响

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摘要

The enhanced properties of polymer nanocomposites as compared with pure polymers are only achieved in the presence of well-dispersed nanofillers and strong interfacial adhesion. In this study, we report the preparation of nanocomposite films based on poly(vinyl alcohol) (PVA) filled with well dispersed graphene sheets (GS) by in situ reduction of graphene oxide (GO) dispersed in PVA solution using ascorbic acid (L-AA) as environmentally friendly reductant. The combined effect of GS content and glycerol as plasticizer on the structure, thermal, mechanical, water absorption, and water barrier properties of PVA/GS nanocomposite films is studied for the first time. Higher glass transition temperature, lower crystallinity, melting, and crystallization temperature, higher mechanical properties, and remarkable improvement in the thermal stability compared to neat PVA are obtained as a result of strong interfacial interactions between GS and PVA by hydrogen bonding. PVA/GS composite film prepared by ex situ process is more brittle than its in situ prepared counterpart. The presence of GS improves the water barrier and water resistance properties of nanocomposite films by decreasing water vapor permeability and water absorption of PVA. This work demonstrates that the tailoring of PVA/GS nanocomposite properties is enabled by controlling GS and glycerol content. The new developed materials, particularly those containing plasticizer, could be potential carriers for transdermal drug delivery.
机译:与纯聚合物相比,聚合物纳米复合材料增强的性能仅在存在良好分散的纳米填料和强界面粘合性的情况下才能实现。在这项研究中,我们报告了使用抗坏血酸(L-)原位还原分散在PVA溶液中的氧化石墨烯(GO)来制备填充有分散良好的石墨烯片(GS)的基于聚乙烯醇(PVA)的纳米复合膜的方法。 AA)作为环保还原剂​​。首次研究了GS含量和甘油作为增塑剂对PVA / GS纳米复合膜的结构,热学,力学,吸水率和阻水性能的综合影响。与纯PVA相比,由于GS和PVA之间通过氢键之间的强界面相互作用,获得了更高的玻璃化转变温度,更低的结晶度,熔点和结晶温度,更高的机械性能以及热稳定性的显着提高。非原位制备的PVA / GS复合膜比原位制备的PVA / GS复合膜更脆。 GS的存在通过降低PVA的水蒸气渗透性和吸水率来改善纳米复合膜的防水性和耐水性。这项工作表明,通过控制GS和甘油含量可以实现PVA / GS纳米复合材料性能的定制。新开发的材料,特别是那些含有增塑剂的材料,可能是透皮药物输送的潜在载体。

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