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Spontaneous bilayer phase separations of spin-coated polymer blend thin films: A neutron reflectivity study

机译:旋涂聚合物共混薄膜的自发双层相分离:中子反射率研究

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This study investigates the spontaneous formation of phase-separated bilayer structures of polymer blend thin films upon spin coating. Neutron reflectivity is used to measure the bilayer structure of deuterated polystyrene (dPS) and polymethylmethacrylate (PMMA) blend thin films with various molecular weights (M (w) ). The results indicate that the binary polymer blend forms a well-defined phase-separated bilayer structure of a dPS-rich layer on top of a PMMA rich layer with clear interfaces between the layers. The interfacial width is in reasonable agreement with the results of self-consistent field theory modified to account for capillary waves. The blend with higher M (w) exhibits broader interfaces than the theoretical predictions, probably due to the reduced mobility of mixed polymers in the solvent during spin coating. Formation of thin blend films with parallel phase separation can provide a viable route to potential applications of the active layer in bilayer heterojunction devices for polymer photovoltaic applications.
机译:这项研究调查了旋涂后聚合物共混物薄膜的自发形成相分离的双层结构。中子反射率用于测量具有各种分子量(M(w))的氘代聚苯乙烯(dPS)和聚甲基丙烯酸甲酯(PMMA)共混薄膜的双层结构。结果表明,该二元聚合物共混物在富含PMMA的层之上形成了dPS富集层的明确定义的相分离双层结构,各层之间具有清晰的界面。界面宽度与修正自洽场理论以考虑毛细波的结果合理一致。 M(w)较高的共混物比理论预测的界面宽,这可能是由于旋涂过程中混合聚合物在溶剂中的迁移率降低所致。具有平行相分离的薄共混薄膜的形成可以为活性层在聚合物光伏应用的双层异质结器件中的潜在应用提供一条可行的途径。

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