2021
DOI: 10.3390/nano11030669
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Structural Evolution of Nanophase Separated Block Copolymer Patterns in Supercritical CO2

Abstract: Nanopatterns can readily be formed by annealing block copolymers (BCPs) in organic solvents at moderate or high temperatures. However, this approach can be challenging from an environmental and industrial point of view. Herein, we describe a simple and environmentally friendly alternative to achieve periodically ordered nanoscale phase separated BCP structures. Asymmetric polystyrene-b-poly(ethylene oxide) (PS-b-PEO) thin film patterns of different molecular weight were achieved by annealing in supercritical c… Show more

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Cited by 2 publications
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“…Table II shows that both the increase in crystallite size and the improvement in crystallinity were greatest for P3HT-b-PEO, since CO 2 molecules and PEO are known to have higher affinity. 29) This affinity promotes the more efficient intake of CO 2 in PEO domains, which plasticize not only PEO itself but neighboring P3HT mobile and/or rigid amorphous P3HT domain. This may be the origin why P3HT-b-PEO showed the largest increase in hole mobility after scCO 2 treatment compared to other polymers.…”
Section: Structural Analysesmentioning
confidence: 99%
“…Table II shows that both the increase in crystallite size and the improvement in crystallinity were greatest for P3HT-b-PEO, since CO 2 molecules and PEO are known to have higher affinity. 29) This affinity promotes the more efficient intake of CO 2 in PEO domains, which plasticize not only PEO itself but neighboring P3HT mobile and/or rigid amorphous P3HT domain. This may be the origin why P3HT-b-PEO showed the largest increase in hole mobility after scCO 2 treatment compared to other polymers.…”
Section: Structural Analysesmentioning
confidence: 99%