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首页> 外文期刊>Advanced Functional Materials >Dramatic Morphology Control In The Fabrication Of Porous Polymer Films
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Dramatic Morphology Control In The Fabrication Of Porous Polymer Films

机译:多孔聚合物膜制备中的形态学控制

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Highly ordered, porous honeycomb films are prepared by the breath-figure (BF) technique using dendron-functionalized star polymers as precursors. By changing the nature of the dendritic end groups, dramatically different porous morphologies can be produced. Three series of star polymers are prepared with both the size of the 2,2-bis(methoxy)propionic acid (bis-MPA)-based dendron end group and the dendron functionality being varied. Star polymers end-functionalized with acetonide-protected dendrons (generations 1 to 4) are initially prepared and the acetonide groups subsequently deprotected to yield hydroxyl-functionalized star polymers. Modification of these hydroxyl groups with pentadecafluorooctanoyl chloride yields a third series of functionalized star polymers. The resulting star polymers have surface groups with very different polarity and by utilizing these star polymers to form honeycomb films by the BF technique, the morphology produced is dramatically different. The star polymers with amphiphilic character afford interconnected porous morphologies with multiple layers of pores. The star polymers with pentadecafluorooctanoyl end groups show highly ordered monolayers of pores with extremely thin walls and represent a new porous morphology that has previously not been reported. The ability to prepare libraries of different dendronized star polymers has given further insights into the BF technique and allows the final porous morphology to be controllably tuned utilizing the functional chain ends and generation number of the dendronized star polymers.
机译:高度有序的多孔蜂窝膜是使用树突官能化的星形聚合物作为前体,通过呼吸图(BF)技术制备的。通过改变树枝状端基的性质,可以产生截然不同的多孔形态。制备三个系列的星形聚合物,其中基于2,2-双(甲氧基)丙酸(bis-MPA)的树突端基的大小和树突官能度均发生变化。首先制备用乙炔基保护的树突末端官能化的星形聚合物(第1到第4代),然后将乙炔基脱保护,得到羟基官能化的星形聚合物。用十五氟辛酰氯对这些羟基进行修饰,得到第三系列的官能化星形聚合物。所得的星形聚合物具有极性非常不同的表面基团,并且通过BF技术利用这些星形聚合物形成蜂窝状薄膜,所产生的形态显着不同。具有两亲特性的星形聚合物可提供具有多层孔的互连多孔形态。具有五氟十六烷基辛基端基的星形聚合物显示出具有高度薄壁的孔的高度有序的单层,并且代表了以前从未报道过的新的多孔形态。制备不同树枝状星形聚合物文库的能力使人们对高炉技术有了更深入的了解,并允许利用树枝状星形聚合物的功能链末端和生成数量来控制最终的多孔形态。

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