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Rational design of aromatic surfactants for graphene/natural rubber latex nanocomposites with enhanced electrical conductivity

机译:具有增强电导率的石墨烯/天然橡胶胶乳纳米复合材料的芳族表面活性剂的合理设计

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Hypothesis: Graphene nanoplatelets (GNPs) can be dispersed in natural rubber matrices using surfactants. The stability and properties of these composites can be optimized by the choice of surfactants employed as stabilizers. Surfactants can be designed and synthesized to have enhanced compatibility with GNPs as compared to commercially available common surfactants. Including aromatic groups in the hydrophobic chain termini improves graphene compatibility of surfactants, which is expected to increase with the number of aromatic moieties per surfactant molecule. Hence, it is of interest to study the relationship between molecular structure, dispersion stability and electrical conductivity enhancement for single-, double-, and triple-chain anionic graphene-compatible surfactants.
机译:假设:使用表面活性剂可以分散在天然橡胶基质中的石墨烯纳米键纳米缩合物。 这些复合材料的稳定性和性质可以通过选择用作稳定剂的表面活性剂进行优化。 与市售的常见表面活性剂相比,可以设计和合成,以与GNP具有增强的相容性。 在疏水链中包括芳族基团末端改善表面活性剂的石墨烯相容性,这预期随着每种表面活性剂分子的芳族部分的数量而增加。 因此,研究分子结构,分散稳定性和电导率增强的联合,双链和三链阴离子石墨烯相容的表面活性剂之间的关系感兴趣。

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