## Abstract The effect of the initial states (disordered perpendicular cylinder structure vs. parallel cylinder structure) on the crystallization of polystyreneโ__block__โpoly(ethylene oxide) (PSโ__b__โPEO) thin films during cyclohexane annealing was investigated. The cylindrical domains perpendicu
Polymer Melt Intercalation in Clay Modified by Diblock Copolymers
โ Scribed by Yaroslav V. Kudryavtsev; Elena N. Govorun; Arkady D. Litmanovich; Hartmut R. Fischer
- Publisher
- John Wiley and Sons
- Year
- 2004
- Tongue
- English
- Weight
- 143 KB
- Volume
- 13
- Category
- Article
- ISSN
- 1022-1344
No coin nor oath required. For personal study only.
โฆ Synopsis
Abstract
Summary: The thermodynamic equilibrium in a melt of homopolymer C mixed with clay modified by a diblock copolymer AB is considered in theory. It is assumed that mixing is carried out in two stages. At first, the diblock copolymer penetrates into the interlayers formed by long clay sheets. Then, the clay with adsorbed diblock copolymer chains is added to the homopolymer melt. It is shown that the first process is thermodynamically favorable only if the interlayer width exceeds some threshold value that depends mostly on the difference in the adsorption energy of units A and B. A spontaneous mixing at the second stage is possible only if the enthalpic interactions between homopolymer and copolymer units are not very unfavorable. If so, the formation of an intercalated state is expected for a homopolymer of length comparable to the copolymer length, while for a long homopolymer the anticipated equilibrium state is exfoliation. The spatial distribution of A, B, and C units across the interlayer has been studied for different parameters of the system. The most readily adsorbing units A occupy almost all clay surface. However, the layer of block A is considerably swelled by both B and C units. The mutual distribution of units B and C may vary from almost homogeneous to having rather sharp boundary depending on the value of the FloryโHuggins parameter ฯ~BC~. The formation of a pure homopolymer layer at the center of the interlayer indicates about a tendency to exfoliate.
Interlayer profiles of the fractions of units A, B, and C, respectively.
imageInterlayer profiles of the fractions of units A, B, and C, respectively.
๐ SIMILAR VOLUMES
Crystallized chains of nylon 6 lie parallel to the interfaces of the microphase-separated morphology of a nylon 6/PDMS diblock copolymer. Orienting the morphology in the melt using plane strain compression enabled the nylon chain direction to be determined through a combination of transmission elect
## Abstract Polystyrene (PS) nanocomposites were prepared by the freeโradical polymerization of styrene in the presence of organically modified montmorillonite (MMT) clays. MMT clay was modified with a lowโmolecularโweight and quarternized block copolymer of styrene and 4โvinylpyridine [poly(styren
## Abstract Poly(butylene terephthalate) nanocomposites with organically modified montmorillonites have been prepared by __inโsitu__ ring opening polymerization of PBT cyclic oligomers. High molecular weight polymers can be obtained by choosing the proper polymerization conditions and catalyst in v