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Initial Studies Directed toward the Rational Designof Aqueous Graphene Dispersants

机译:针对合理设计的初步研究石墨烯分散剂的制备

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摘要

This study presents preliminary experimental data suggesting that sodium 4-(pyrene-1-yl)butane-1-sulfonate (PBSA), >5, an analogue of sodium pyrene-1-sulfonate (PSA), >1, enhances the stability of aqueous reduced graphene oxide (RGO) graphene dispersions. We find that RGO and exfoliated graphene dispersions prepared in the presence of >5 are approximately double the concentration of those made with commercially available PSA, >1. Quantum mechanical and molecular dynamics simulations provide key insights into the behavior of these molecules on the graphene surface. The seemingly obvious introduction of a polar sulfonate head group linked via an appropriate alkyl spacer to the aromatic core results in both more efficient binding of >5 to the graphene surface and more efficient solvation of the polar head group by bulk solvent (water). Overall, this improves the stabilization of the graphene flakes by disfavoring dissociation of the stabilizer from the graphene surface and inhibiting reaggregation by electrostatic and steric repulsion.These insights are currently the subject of further investigationsin an attempt to develop a rational approach to the design of moreeffective dispersing agents for rGO and graphene in aqueous solution.
机译:这项研究提供了初步的实验数据,表明4-(py-1-基)丁烷-1-磺酸钠(PBSA),> 5 ,pyr 1磺酸钠(PSA)的类似物,< strong> 1 ,可增强还原型氧化石墨烯(RGO)水性石墨烯分散体的稳定性。我们发现在> 5 存在下制备的RGO和片状石墨烯分散体的浓度大约是使用市售PSA > 1 制备的那些的两倍。量子力学和分子动力学模拟提供了对这些分子在石墨烯表面上行为的关键见解。通过适当的烷基间隔基连接到芳族核上的极性磺酸根头基团看似明显的引入导致> 5 与石墨烯表面的更有效键合以及极性头基团的更有效溶剂化溶剂(水)。总体而言,这通过减少稳定剂从石墨烯表面的解离并抑制静电和空间排斥引起的再聚集,改善了石墨烯薄片的稳定性。这些见解目前是进一步调查的主题试图开发一种合理的方法来设计更多rGO和石墨烯在水溶液中的有效分散剂。

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