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Role of AAO template filling process parameters in controlling the structure of one-dimensional polymer nanoparticles

机译:AAO模板填充工艺参数在控制一维聚合物纳米颗粒结构中的作用

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Solution template wetting is a common technique used to fabricate elongated polymer nanostructures; however, the parameters controlling the resulting morphology remain unclear. The purpose of this investigation was to elucidate the effects of process variables on the types of nanostructures obtained and to understand the physical mechanisms associated with structure development. 1wt% polystyrene-THF solutions were infiltrated into commercial and homemade anodized aluminum oxide (AAO) templates. The wetting interaction between the AAO template and the polymer solution was examined through contact angle measurements. In general, for moderate dipping times (<18h), the morphology of the nanopolymer was rod-like at low molecular weights, while tubes were observed at high molecular weight, even at this low concentration. Nanorods were obtained for all molecular weights for extended dipping times. The data suggest that phase separated layers may grow sequentially from the pore walls and yield nanotubes if the growth is interrupted or produce nanorods for unhindered deposition over long periods.
机译:溶液模板润湿是用于制造细长聚合物纳米结构的常用技术。然而,控制最终形态的参数仍然不清楚。这项研究的目的是阐明工艺变量对获得的纳米结构类型的影响,并了解与结构发展相关的物理机制。将1wt%的聚苯乙烯-THF溶液浸入市售和自制的阳极氧化铝(AAO)模板中。通过接触角测量检查了AAO模板和聚合物溶液之间的润湿相互作用。通常,对于适度的浸渍时间(<18h),纳米聚合物的形态在低分子量下呈棒状,而即使在此低浓度下也可观察到高分子量的试管。对于所有分子量的纳米棒,可以延长浸渍时间。数据表明,如果生长中断,相分离的层可能会从孔壁开始顺序生长并产生纳米管,或者会产生纳米棒以长时间无阻碍地沉积。

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