4.6 Article

Investigation of porous polydimethylsiloxane structures with tunable properties induced by the phase separation technique

期刊

JOURNAL OF APPLIED POLYMER SCIENCE
卷 138, 期 29, 页码 -

出版社

WILEY
DOI: 10.1002/app.50688

关键词

emulsion polymerization; mechanical properties; microscopy; phase behavior; porous materials

资金

  1. National Nuclear Security Administration [DE-NA0002839]

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This study reports the fabrication and characterization of porous PDMS structures using the solvent evaporation-induced phase separation technique. Different pore sizes were achieved by tuning the water to THF ratio, and a range of elastic moduli was obtained by adjusting the solvent and non-solvent content in the solution. The porosity of the structure was found to be mainly controlled by the PDMS concentration, with the water/THF ratio having a negligible effect.
This article reports the fabrication and characterization of porous polydimethylsiloxane (PDMS) structures developed by the solvent evaporation-induced phase separation technique. Ternary systems containing water/tetrahydrofuran (THF)/PDMS with various concentrations are produced to form a stable solution. The porous PDMS structures are formed by removing the solvent (THF) and nonsolvent (water) phases during the stepping heat treatment procedure. The analytical ternary phase diagram is constructed based on the thermodynamic equilibrium state in the polymer solution to explain the stable/unstable formulations and the possible composition change path. The results show that the isolated pores with the adjustable pore size ranging from 330 to 1900 mu m are obtained by tuning the water to the THF ratio. The mechanical properties of the porous PDMS structures are determined by conducting the tensile tests on the prepared dog bone-shaped specimens. A wide range of elastic modulus ranging between 0.49 and 1.05 MPa was achieved without affecting the density of the porous sample by adjusting the solvent and non-solvent content in the solution. It is shown that the flexibility of the porous structures can be improved by reducing the ratio of water to THF and decreasing the PDMS content. The porosity measurements reveal that the PDMS concentration is the major phase controlling the porosity of the structure, while the effect of water/THF is negligible.

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