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Ultra-thin and strong formvar-based membranes with controlled porosity for micro- and nano-scale systems

机译:基于超薄和强大的型膜,具有控制孔隙率的微型和纳米级系统

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We present a methodology for developing ultra-thin and strong formvar-based membranes with controlled morphologies. Formvar is a thin hydrophilic and oleophilic polymer inert to most chemicals and resistant to radiation. The formvar-based membranes are viable materials as support structures in micro-and macro-scale systems depending on thinness and porosity control. Tunable sub-micron thick porous membranes with 20%-65% porosity were synthesized by controlling the ratios of formvar, glycerol, and chloroform. This synthesis process does not require complex separation or handling methods and allows for the production of strong, thin, and porous formvar-based membranes. An expansive array of these membrane characterizations including chemical compatibility, mechanical responses, wettability, as well as the mathematical simulations as a function of porosity has been presented. The wide range of chemical compatibility allows for membrane applications in various environments, where other polymers would not be suitable. Our formvar-based membranes were found to have an elastic modulus of 7.8 GPa, a surface free energy of 50 mNm(-1) and an average thickness of 125 nm. Stochastic model simulations indicate that formvar with the porosity of similar to 50% is the optimal membrane formulation, allowing the most material transfer across the membrane while also withstanding the highest simulated pressure loadings before tearing. Development of novel, resilient and versatile membranes with controlled porosity offers a wide range of exciting applications in the fields of nanoscience, microfluidics, and MEMS.
机译:我们提出了一种用受控形态发育基于超薄和强型型膜的方法。 FormVar是一种薄的亲水和油脂聚合物,对大多数化学品和抗辐射抵抗力。基于Formvar的膜是根据薄度和孔隙控制的微型和宏观系统中的可行材料作为支撑结构。通过控制氟甘油,甘油和氯仿的比例合成了可调谐亚微米厚多孔膜,合成了20%-65%孔隙率。该合成方法不需要复杂的分离或处理方法,并允许生产强,薄和多孔的型膜。已经提出了一种膨胀的这些膜特征,包括化学相容性,机械响应,润湿性以及作为孔隙率函数的数学模拟。各种化学相容性允许各种环境中的膜应用,其中其他聚合物不合适。发现我们的甲型基膜具有7.8GPa的弹性模量,表面自由能为50mnm(-1),平均厚度为125nm。随机模型模拟表明,具有与50%相似的孔隙率的FormVar是最佳膜制剂,允许在膜之前的最高模拟压力载体上穿过膜的最具材料转移。具有受控孔隙率的新型,弹性和多功能膜的开发提供了广泛的墨西哥,微流体和MEMS领域的广泛兴奋应用。

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