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A Surlyn/magnesium oxide nanocomposite as an effective water vapor barrier for organic device encapsulation

机译:Surlyn /氧化镁纳米复合材料可作为有机器件封装的有效水蒸气阻挡层

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摘要

A reactive polymer nanocomposite system was proposed as an effective water vapor barrier material for organic device encapsulation. Nanosized magnesium oxide (MgO) was synthesized by the solution combustion technique using two different fuels, lactose and alanine. The purity and crystallite size of MgO were determined from X-ray diffraction studies. The surface areas and porosity measurements were used to determine the water adsorption capacities of MgO. Nanocomposites with various concentrations (wt% = 0.25, 0.5, 1 and 2.5) of MgO were prepared using Surlyn as the base polymer. The permeation rate of moisture through the fabricated films was calculated using calcium degradation test and these rates were further used to calculate the diffusivities. Accelerated aging experiments were conducted to study the performance of organic photovoltaic devices encapsulated with synthesized films under accelerated weathering conditions. The performance of the barrier materials with synthesized MgO was also compared to that obtained with commercial MgO. The films containing MgO obtained from lactose exhibited better barrier properties compared to other films made with commercial MgO and MgO synthesized using alanine as well as other nanocomposites reported in the literature.
机译:提出了反应性聚合物纳米复合材料体系作为有机器件封装的有效水蒸气阻隔材料。通过溶液燃烧技术,使用乳糖和丙氨酸这两种不同的燃料,合成了纳米级氧化镁(MgO)。 MgO的纯度和微晶尺寸由X射线衍射研究确定。使用表面积和孔隙率测量来确定MgO的吸水能力。使用Surlyn作为基础聚合物制备了各种浓度(wt%= 0.25、0.5、1和2.5)的MgO纳米复合材料。使用钙降解测试来计算透湿的水分透过制膜的速率,并将这些速率进一步用于计算扩散率。进行了加速老化实验,以研究在加速老化条件下用合成膜封装的有机光伏器件的性能。还比较了用合成的MgO制成的阻隔材料的性能与用商业MgO所获得的材料的性能。与用丙氨酸以及文献中报道的其他纳米复合材料合成的商业MgO和MgO制成的其他薄膜相比,含乳糖的MgO薄膜显示出更好的阻隔性能。

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