Determination of domain sizes in blends of poly(ethylene) and poly(styrene) formed in the presence of supercritical carbon dioxide


Autoria(s): Thurecht, K. J.; Hill, D. J. T.; Preston, C. M. L.; Rintoul, L.; White, J. W.; Whittaker, A. K.
Contribuinte(s)

Timothy P. Lodge

Data(s)

01/01/2004

Resumo

Well-mixed blends of poly(ethylene) and poly(styrene) have been synthesized using supercritical carbon dioxide as a solvent. The morphology of the blends has been conclusively characterized using differential scanning calorimetry (DSC), small-angle X-ray scattering (SAXS), Raman microprobe microscopy, and C-13 solid-state cross-polarization magic angle spinning NMR (C-13 CPMAS NMR). DSC measurements demonstrate that poly(styrene) in the blends resides solely in the amorphous regions of the poly(ethylene) matrix; however, corroborative evidence from the SAXS experiments shows that poly(styrene) resides within the interlamellar spaces. The existence of nanometer-sized domains of poly(styrene) was shown within a blend of poly(styrene) and poly(ethylene) when formed in supercritical carbon dioxide using Raman microprobe microscopy and C-13 CPMAS NMR spectroscopy coupled with a spin diffusion model. This contrasts with blends formed at ambient pressure in the absence of solvent, in which domains of poly(styrene) in the micrometer size range are formed. This apparent improved miscibility of the two components was attributed to better penetration of the monomer prior to polymerization and increased swelling of the polymer substrate by the supercritical carbon dioxide solvent.

Identificador

http://espace.library.uq.edu.au/view/UQ:72955

Idioma(s)

eng

Publicador

American Chemical Society

Palavras-Chave #Polymer Science #Low-density Polyethylene #Spin-lattice Relaxation #X-ray-scattering #Phase-behavior #Solid-state #Diffusion #Polymers #Morphology #Composites #Styrene #C1 #291401 Polymers #670707 Inorganic industrial chemicals
Tipo

Journal Article