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3-Aminopropyl-triethoxysilane-functionalized rice husk and rice husk ash reinforced polyamide 6/graphene oxide sustainable nanocomposites

机译:3-氨基丙基 - 三乙氧基硅烷官能化稻壳和水稻壳灰增强聚酰胺6 /石墨烯氧化物可持续纳米复合材料

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摘要

Rice husk and rice husk ash are two well-known sustainable materials for wastewater purification applications. In this work, functionalized-rice husk and -rice husk ash reinforced polyamide 6/ graphene oxide nanocomposites are fabricated using the solution casting method. 3Aminopropyl-triethoxysilane is used as the functionalizing agent for the surface modification of rice husk and rice husk ash particles. Siloxane bonding between silanol groups of the functionalizing agent and silica containing particles can result in the introduction of amino groups on the surface of particles, which can react with either terminal carboxyl groups or amide groups of the polyamide 6. Functionalized-rice husk ash, which contains a large amount of nano silica, forms distributed nano-sized aggregates in the structure of the polyamide 6. Moreover, the simultaneous presence of graphene oxide and rice husk ash, as an organic/inorganic nano-system, in the matrix structure results in a clear enhancement in the structural and mechanical characteristics of final nanocomposites. This is the result of possible strong interactions between the polymeric matrix and the organic/inorganic nano-system. The influences of the organic/inorganic nano-system on the melting process, morphology and dynamic-mechanical properties of reinforced nanocomposites are investigated in details. Moreover, the impacts of the organic/ inorganic nano-system loading on the thermal stability of fabricated nanocomposites are studied. Considering results presented here and the well-known adsorbent characteristics of rice husk ash nanoparticles, the functionalized-rice husk ash/graphene oxide/polyamide 6 sustainable nano composite is a perfect candidate for fabricating nanofibers, which are applicable in wastewater purification applications.
机译:稻壳和稻壳灰是两种众所周知的废水净化应用的可持续材料。在这项工作中,使用溶液浇铸方法制造官能化 - 稻壳和-RICE壳壳增强聚酰胺6 /石墨烯氧化物纳米复合材料。 3氨基丙基 - 三乙氧基硅烷用作水稻壳和稻壳灰颗粒表面改性的官能化试剂。官能化剂和二氧化硅含有颗粒的硅烷醇基之间的硅氧烷键合可导致颗粒表面上的氨基引入,其可以与聚酰胺的末端羧基或酰胺基团反应6.官能化 - 稻壳灰,哪个含有大量的纳米二氧化硅,在聚酰胺的结构中形成分布式纳米尺寸的聚集体6.此外,作为有机/无机纳米系统的石墨烯和稻壳的同时存在,在基质结构中产生最终纳米复合材料的结构和机械特性的清晰增强。这是聚合物基质和有机/无机纳米系统之间可能的强相互作用的结果。有机/无机纳米系统对细节研究了增强纳米复合材料的熔化过程,形态和动态机械性能的影响。此外,研究了有机/无机纳米系统负载对制造纳米复合材料热稳定性的影响。考虑到此处提出的结果以及稻壳灰纳米粒子的众所周知的吸附特性,官能化稻壳灰/石墨烯氧化物/聚酰胺6可持续纳米复合材料是制造纳米纤维的完美候选者,可适用于废水净化应用。

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