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Polymeric Nanocylinders by Combining Block Copolymer Self-Assembly and Nanoskiving

机译:嵌段共聚物自组装与纳米切削相结合的高分子纳米圆筒

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摘要

A new facile fabrication approach to generate polymeric nanostructures is described. Block copolymers containing immiscible segments can self-assemble to generate ordered nanostructures, such as cylinders of one block in a matrix of the other in the bulk, which can then be sectioned on the nanoscale using a microtome (nanoskiving). Dispersing these sections in a selective solvent for the matrix block results in nanocylinders. In one example, we utilized a poly(N,N-dimethylacrylamide)-block-poly(styrene) (PDMA—PS) copolymer containing 36% by volume of PS. This composition was selected as it self-assembles into cylinders of PS in a matrix of PDMA Following a previously described procedure, the cylinders were aligned using a channel die. The aligned samples were subsequently sectioned using a microtome containing a diamond knife and dispersed in water, a selective solvent for the PDMA matrix, affording PS nanocylinders with a PDMA corona. This technique allows tuning of nanocylinders without the requirement of specialty fabrication equipment.
机译:描述了一种生成聚合物纳米结构的新的简便制造方法。包含不混溶链段的嵌段共聚物可以自组装以生成有序的纳米结构,例如一个嵌段的圆柱体在另一个本体的基质中,然后可以使用切片机(纳米切片)在纳米级上进行切片。将这些部分分散在用于基质嵌段的选择性溶剂中会产生纳米圆柱体。在一个实例中,我们利用了含有36体积%的PS的聚(N,N-二甲基丙烯酰胺)-嵌段-聚(苯乙烯)(PDMA-PS)共聚物。选择该组合物是因为其在PDMA矩阵中自组装成PS圆柱体。按照先前描述的程序,使用通道模将圆柱体对齐。随后使用包含金刚石刀的切片机将对准的样品切片,并分散在水中,该水中是PDMA基质的选择性溶剂,为PS纳米圆筒提供PDMA电晕。该技术无需特殊的制造设备即可进行纳米圆柱体的调谐。

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