4.7 Article

Hierarchical Structure in Nanoscale Thin Films of a Poly(styrene-b-methacrylate grafted with POSS) (PS214-b-PMAPOSS27)

Journal

MACROMOLECULES
Volume 43, Issue 24, Pages 10568-10581

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ma101276d

Keywords

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Funding

  1. National Research Foundation of Korea (Center for Electro-Photo Behaviors in Advanced Molecular Systems)
  2. Ministry of Education, Science & Technology (MEST)
  3. POSCO
  4. POSTECH Foundation
  5. Mitsubishi Chemical Corporation
  6. UW-NSF Nanoscale Science and Engineering Center [DMR 0832760]
  7. Division Of Materials Research
  8. Direct For Mathematical & Physical Scien [832760] Funding Source: National Science Foundation

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An interesting organic-inorganic diblock copolymer poly(styrene-b-methacrylate grafted with polyhedral oligomeric silsesquioxane) (PS b PMAPOSS), with PS (an average degree of polymerization (DP) over bar of 214) and PMAPOSS ((DP) over bar = 27) blocks was prepared PS214 b PMAPOSS(27) The morphological structures in nanoscale thin films of PS214 b-PMAPOSS(27) and their temperature dependent changes were investigated in detail by performing grazing incidence X ray scattering (GIXS) with a synchrotron radiation source GIXS formulas based on structural models were derived for the quantitative analysis of the two dimensional (2D) scattering data In addition the thermal properties of the diblock copolymer were characterized it was found to be stable up to 330 degrees C, and to undergo a glass transition at 96 degrees C (PS block) and a melting transition at 173 degrees C (PMAPOSS block) The quantitative 2D GIXS analysis found that the diblock copolymer molecules in the thin films undergo phase separation into PS and PMAPOSS domains, which generates a lamellar structure Surprisingly, in the solvent-annealed films with and without subsequent thermal annealing the lamellar structure is completely oriented in the out of plane of the film and is stable up to the degradation temperature The PMAPOSS layers in the lamellar structure were found to consist of two sublayers, namely a densely ordered layer composed of vertically oriented orthorhombic crystals and a less ordered layer that consists of molecularly stacked layers that are oriented vertically In both the sublayers, the PMAPOSS block chains have helical conformations and thus are present as molecular cylinders These molecular cylinders are always oriented in the film plane On heating the orthorhombic crystals and the molecularly stacked layers melt over the range 170-190 degrees C On subsequent cooling, the orthorhombic crystals and molecularly stacked layers are not fully recovered, which indicates that the formation of orthorhombic crystals and stacked layers in the PMAPOSS domains requires thermal annealing

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