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Controlled Bulk Properties of Composite Polymeric Solutions for Extensive Structural Order of Honeycomb Polysulfone Membranes

机译:蜂窝状聚砜膜的广泛结构有序的复合聚合物溶液的可控体积特性

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摘要

This work provides additional insights into the identification of operating conditions necessary to overcome a current limitation to the scale-up of the breath figure method, which is regarded as an outstanding manufacturing approach for structurally ordered porous films. The major restriction concerns, indeed, uncontrolled touching droplets at the boundary. Herein, the bulk of polymeric solutions are properly managed to generate honeycomb membranes with a long-range structurally ordered texture. Water uptake and dynamics are explored as chemical environments are changed with the intent to modify the hydrophilic/hydrophobic balance and local water floatation. In this context, a model surfactant such as the polyoxyethylene sorbitan monolaurate is used in combination with alcohols at different chain length extents and a traditional polymer such as the polyethersufone. Changes in the interfacial tension and kinematic viscosity taking place in the bulk of composite solutions are explored and examined in relation to competitive droplet nucleation and growth rate. As a result, extensive structurally ordered honeycomb textures are obtained with the rising content of the surfactant while a broad range of well-sized pores is targeted as a function of the hydrophilic-hydrophobic balance and viscosity of the composite polymeric mixture. The experimental findings confirm the consistency of the approach and are expected to give propulsion to the commercially production of breath figures films shortly.
机译:这项工作为确定克服当前限制呼吸图法的局限性所必需的操作条件提供了更多的见识,呼吸法被认为是结构有序多孔膜的出色制造方法。实际上,主要限制条件涉及边界处不受控制的接触液滴。在此,适当地管理大部分聚合物溶液以产生具有长程结构有序纹理的蜂窝膜。随着化学环境的改变,人们探索了水的吸收和动力学,以改变亲水/疏水平衡和局部水的漂浮。在这种情况下,将模型表面活性剂如聚氧乙烯脱水山梨糖醇单月桂酸酯与不同链长程度的醇和传统聚合物如聚醚砜联合使用。探索并研究了与复合液滴成核和生长速率有关的界面张力和运动粘度在大部分复合溶液中的变化。结果,随着表面活性剂含量的增加,获得了广泛的结构上有序的蜂窝织构,同时根据亲水性-疏水性平衡和复合聚合物混合物的粘度,瞄准了大范围的尺寸合适的孔。实验结果证实了该方法的一致性,并有望在不久后推动呼吸数字胶片的商业化生产。

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