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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Effects of solvent evaporation conditions on solvent vapor annealed cylinder-forming block polymer thin films
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APS -APS March Meeting 2017 - Event - Effects of solvent evaporation conditions on solvent vapor annealed cylinder-forming block polymer thin films

机译:APS -APS 2017年3月会议-活动-溶剂蒸发条件对溶剂蒸汽退火的圆筒形嵌段聚合物薄膜的影响

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Solvent vapor annealing is a less time and energy intensive method compared to thermal annealing, to direct the self-assembly of block polymer thin films. Periodic nanostructures have applications in ultrafiltration, magnetic arrays, or other structures with nanometer dimensions, driving its continued interest. Our goal is to create thin films with hexagonally packed, perpendicular aligned cylinders of poly(lactide) in a poly(styrene) matrix that span the thickness of the film with low anneal times and low defect densities, all with high reproducibility, where the latter is paramount. Through the use of our computer-controlled, pneumatically-actuated, purpose-built solvent vapor annealing chamber, we have the ability to monitor and control vapor pressure, solvent concentration within the film, and solvent evaporation rate with unprecedented precision and reliability. Focusing on evaporation, we report on two previously unexplored areas, chamber pressure during solvent evaporation and the flow rate of purging gas aiding the evaporation.~We will report our exhaustive results following atomic force microscopy analysis of films exposed to a wide range of pressures and flow rates. Reliably achieving well-ordered films, while occurring within a large section of this parameter space, was correlated with high-flow evaporation rates and low chamber pressures. These results~have significant implications on other methods of solvent annealing, including ``jar'' techniques.
机译:与热退火相比,溶剂气相退火是一种省时省力的方法,用于指导嵌段聚合物薄膜的自组装。周期性纳米结构可用于超滤,磁阵列或其他具有纳米尺寸的结构,这引起了人们的持续关注。我们的目标是在聚苯乙烯基体中以六边形堆积,垂直排列的聚丙交酯圆柱体形成薄膜,该薄膜跨越膜的厚度,退火时间短,缺陷密度低,且重现性高,而后者至关重要。通过使用我们计算机控制的气动特定溶剂蒸气退火室,我们能够以前所未有的精度和可靠性监视和控制蒸气压,薄膜中的溶剂浓度以及溶剂蒸发速率。着重讨论蒸发,我们报告了两个以前未曾探索过的领域,即溶剂蒸发过程中的腔室压力和辅助蒸发的吹扫气体的流速。〜我们将通过原子力显微镜分析暴露于各种压力和压力的薄膜后报告详尽的结果。流量。在此参数空间的很大一部分中发生时,可靠地获得井井有条的薄膜与高流量蒸发速率和低腔室压力相关。这些结果对其他溶剂退火方法具有重要意义,包括``罐''技术。

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