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Selective molecular annealing: in situ small angle X-ray scattering study of microwave-assisted annealing of block copolymers

机译:选择性分子退火:嵌段共聚物的微波辅助退火原位小角X射线散射研究

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摘要

Microwave annealing has emerged as an alternative to traditional thermal annealing approaches for optimising block copolymer self-assembly. A novel sample environment enabling small angle X-ray scattering to be performed in situ during microwave annealing is demonstrated, which has enabled, for the first time, the direct study of the effects of microwave annealing upon the self-assembly behavior of a model, commercial triblock copolymer system [polystyrene-block-poly(ethylene-co-butylene)-block-polystyrene]. Results show that the block copolymer is a poor microwave absorber, resulting in no change in the block copolymer morphology upon application of microwave energy. The block copolymer species may only indirectly interact with the microwave energy when a small molecule microwave-interactive species [diethylene glycol dibenzoate (DEGDB)] is incorporated directly into the polymer matrix. Then significant morphological development is observed at DEGDB loadings [greater-than-or-equal]6 wt%. Through spatial localisation of the microwave-interactive species, we demonstrate targeted annealing of specific regions of a multi-component system, opening routes for the development of "smart" manufacturing methodologies.
机译:微波退火已成为替代传统热退火方法以优化嵌段共聚物自组装的替代方法。展示了一种新颖的样品环境,该环境使得能够在微波退火过程中就地进行小角度X射线散射,这首次使人们能够直接研究微波退火对模型的自组装行为的影响,商业三嵌段共聚物体系[聚苯乙烯-嵌段-聚(乙烯-丁烯)-嵌段-聚苯乙烯]。结果表明,该嵌段共聚物是差的微波吸收剂,在施加微波能量后,该嵌段共聚物的形态没有变化。当将小分子微波相互作用种[二甘醇二苯甲酸酯(DEGDB)]直接掺入聚合物基质中时,嵌段共聚物可能仅与微波能量间接相互作用。然后,在DEGDB装载量[大于或等于] 6 wt%时观察到明显的形态发展。通过微波互动物种的空间定位,我们展示了多组分系统特定区域的目标退火,为“智能”制造方法的发展开辟了道路。

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