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Sepiolite-embedded binary nanocomposites of (alkyl)methacrylate-based responsive polymers: Role of silanol groups of fibrillar nanoclay on functional and thermomechanical properties

机译:(烷基)甲基丙烯酸酯的响应性聚合物的海硫醇酯 - 包覆的二元纳米复合材料:硅烷醇类纳米粘土硅烷醇基团对功能性和热机械性能的作用

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摘要

Binary nanocomposites filled with fibrillar nanoclay sepiolite (SP) was manufactured using a hydrophilic terpolymer matrix containing 2-(diethylamino)ethyl methacrylate, hydroxyethyl methacrylate and 2-acrylamido-2-methyl-1-propanesulfonic acid. A direct correlation between dispersion of nanofillers, matrix-filler local interaction and improvement of macroscopical mechanical properties was obtained. Mechanical testing revealed that incorporation of SP nanofillers impart to terpolymer matrix a higher degree of reinforcement. Besides fibrous structure of SP, the interactions between silanol (-SiOH) groups present along fibers and terpolymer chains are responsible of extent of reinforcement of nanocomposites. The increase in modulus imparted by incorporation of -SiOH groups reflected a continuous increase in crosslinking density created by terpolymer-nanofiller interactions. Effective crosslink density of nanocomposites was expressed by a cubic polynomial function of SP loading. Swelling ratio of SP nanofiller containing nanocomposites was found to highly decrease at CSP 3.50%(w/v), with regard to clay-free terpolymers reflecting strong interactions between pendant hydroxyl, carbonly, tertiary amino groups of terpolymer matrix and silanol groups of SP. Excellent pHresponsive swelling was observed in the range of pH 2.1?10.7 and the nanocomposites swelled in acidic conditions depending on the amount of protonated diethyl amino groups. Sensitivity sequence of terpolymer nanocomposites to mono- and di-valent cations with a common anion (Cl-) on swelling was Na+ K+ Mg2+. The control of quantity of SP fibers and polymerization temperature allows to manage mechanical properties by just tuning chemical architecture of terpolymer/clay nanocomposites. SP reinforcement of terpolymers can enrich various further characteristics such as targeted delivery of biomolecules or drugs.
机译:使用含有2-(二乙基氨基)甲基丙烯酸甲酯,甲基丙烯酸羟乙酯和2-丙烯酰胺-2-甲基-1-丙二磺酸制备填充有纤维状纳米烷基硫醇(SP)的二元纳米复合材料。获得纳米填料分散,基质填料局部相互作用和改善宏观机械性能之间的直接相关性。机械测试显示,掺入SP纳米填充物赋予萜烯基质的较高的增强件。除SP的纤维结构外,沿纤维和三元共聚物链中存在的硅烷醇(-SIOH)基团之间的相互作用是纳米复合材料的增强程度的责任。通过掺入-SiOH基团赋予的模量的增加反映了通过三元聚合物 - 纳米填充相互作用产生的交联密度的连续增加。纳米复合材料的有效交联密度由SP加载的立方多项式表示。含有纳米复合材料的SP纳米复合材料的溶胀比在CSP&GT的高度降低中被发现。 3.50%(w / v),关于无粘土三元共聚物,反映了悬浮液与sp的三元共聚物基质和硅烷醇基的含羟基,碳基,叔氨基之间的强相互作用。在pH2.1α10.7的范围内观察出优异的文学肿胀,并且根据质子化二乙基氨基的量溶胀的纳米复合材料。用膨胀(Cl-)在溶胀的单聚合物纳米复合物中的敏感性序列与膨胀的常见阴离子(Cl-)是Na +& K +& Mg2 +。通过仅通过调整三元共聚物/粘土纳米复合材料的化学结构来控制SP纤维和聚合温度的量的控制。三元共聚物的SP加固可以丰富各种进一步的特征,例如靶向递送生物分子或药物。

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