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Layered Ultrathin Proton Conductive Film Based on Polymer Nanosheet Assembly

机译:基于聚合物纳米片组装的层状超薄质子导电膜

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As described in this paper, a layered ultrathin proton conductive film was prepared using a poly(N-dodecylacrylamide-co-2-acrylamido-2-methylpropanesulfonic acid) (p(DDA/AMPS)) polymer nanosheet. The surface pressure-area isotherm revealed that p(DDA/ AMPS) formed a stable monolayer at the air-water interface. The polymer monolayer was transferred onto a solid substrate using the Langmuir-Blodgett technique. X-ray diffraction measurements of a 30-layer film of p(DDA/AMPS) showed clear Kiessig fringes and one Bragg peak, which indicate that the multilayer film took a uniform layered structure. The monolayer thickness was determined as 1.85 nm from the Bragg peak. The proton conductivity of p(DDA/AMPS) polymer nanosheet through the layer plane direction was studied with changing temperature and relative humidity. The proton conductivity ofthe multilayer film was on the order of 1 x 10~(-5)S/cmat 100% RH with 20 °C and increased to 1 x 10~2S/cm at 70°C. The proton conductivity of the multilayer film showed a more than 10 times higher value than that of the spin-coated film because of the formation of a uniform and consecutive hydrophilic nanochannel through the hydrophilic region in the multilayer film.
机译:如本文所述,使用聚(N-十二烷基丙烯酰胺-co-2-丙烯酰胺基-2-甲基丙烷磺酸)(p(DDA / AMPS))聚合物纳米片制备层状超薄质子导电膜。表面压力-面积等温线表明p(DDA / AMPS)在空气-水界面处形成稳定的单层。使用Langmuir-Blodgett技术将聚合物单层转移到固体基质上。对p(DDA / AMPS)的30层膜的X射线衍射测量显示出清晰的Kiessig条纹和一个布拉格峰,这表明该多层膜具有均匀的层状结构。从布拉格峰确定单层厚度为1.85nm。研究了p(DDA / AMPS)聚合物纳米片在层平面方向上的质子电导率随温度和相对湿度的变化。在20℃下,多层膜的质子电导率约为1×10 2-(-5)S / cmat 100%RH,在70℃下质子电导率增加到1×10 2(cm)/ cm 2。多层膜的质子电导率显示出比旋涂膜的质子电导率高十倍以上,这是因为穿过多层膜中的亲水性区域形成了均匀且连续的亲水性纳米通道。

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