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Aligned Proton-Conducting Graphene Sheets via Block Copolymer Supramolecular Assembly and Their Application for Highly Transparent Moisture-Sensing Conductive Coating

机译:通过块共聚物超分子组件对齐的质子传导石墨烯板及其用于高透明的水分感应导电涂层的应用

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Here, we have demonstrated a well-defined strategy to prepare highly sulphonated reduced graphene oxide (S-rGO) sheets via non-covalent modification of rGO with water soluble rod-coil conjugated block copolymer poly(3-hexylthiophene)-block-poly (4-styrenesulfonic acid) (P3HT-b-PSSA) carrying a long PSSA block. S-rGO sheets are highly water soluble and its aqueous solution can be used to fabricate highly transparent conductive thin film coating on versatile smooth substrate surfaces like glass, indium tin oxide (ITO), quartz and flexible PET. The successful anchoring of sulfonic acid group on rGO surface via non-covalent modification by P3HT-b-PSSA was confirmed and analyzed by FTIR and XRD study. The bulk morphology of S- rGO reveals sheet like morphology where individual sheets are aligned with each other in a parallel arrangement through intercalation of PSSA chains driven by block copolymer self- assembly. AFM image of the thin film also supports nice parallel alignment of S-rGO sheets of average thickness 100 nm on substrate surface. S-rGO sample shows very high water uptake (91% in comparison to its initial weight) and proton conductivity 0.5 S/cm after water vapor exposure for 1 hour. Such high proton conductivity is due to the synergy of alignment of graphene sheets with a continuous network of proton conducting nanochannels created by block copolymer microphase separation on the rGO surface. Nyquist plot with two semicircles suggested the presence of grain boundaries in the sample.
机译:在这里,我们展示了一种明确定义的策略,可以通过无共价修饰RGO使用水溶性杆杆胶胶合结合块共聚物聚合物聚(3-己基噻吩) - 块 - 块 - 块状(S-RGO)片(S-RGO)片(S-RGO)纸张(3-己基噻吩) - 块状poly(携带长pSSA块的4-型硫酸)(P3HT-B-PSSA)。 S-RGO板是高度水溶性的,其水溶液可用于在多功能光滑的底物表面上制造高透明的导电膜涂层,例如玻璃,二锡氧化物(ITO),石英和柔性宠物。通过FTIR和XRD研究确认并分析了通过P3HT-B-PSSA的非共价修饰在RGO表面上成功锚定在RGO表面上。 S-rgo的散装形态揭示了像形态一样的薄片,其中通过块共聚物自组装驱动的PSSA链的插入,单个片段通过平行排列以平行的排列对齐。薄膜的AFM图像还支持底物表面上平均厚度为100 nm的S-RGO平行平行对齐。 S-RGO样品显示出非常高的水吸收(与初始重量相比为91%)和水蒸气暴露后0.5 s/cm的质子电导率1小时。如此高的质子电导率是由于石墨烯板与连续的质子导电纳米通道网络的协同作用,由RGO表面上的块共聚物麦粒分离产生。 Nyquist图具有两个半圆,表明样品中存在晶界。

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