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In contrast, this work presents a facile method to fabricate highly porous and highly interconnected nano-fibrous scaffold sheets by phase inversion using PLLA of very high molecular weight (5.7 × 105 g mol 1).
The aim of this work was to investigate anisotropic microporous membrane formation by phase inversion; using immersion precipitation technique and a ternary polymer system consisting of bisphenol-A polycarbonate, N-methyl-2-pyrrolidone as solvent and water as non-solvent to the polymer.
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Gusman and Tanioka (2013) reported that the centroid moment tensor (CMT) solution can be determined by W phase inversion using 5 or 10 min waveform data from the P-wave arrival, and the initial tsunami height distribution from this solution can be used as the tsunami source.
Vinodhini and Sudha (2016) fabricated a novel ultrafiltration membrane prepared by phase inversion method using cellulose acetate, nano chitosan, and polyethylene glycol.
Macroporous PVdF composite separators were prepared by phase inversion method using PA and PET, and non-woven cellulose as support layers.
A novel nanoporous polymer membrane comprised of poly vinylidene fluoride-co-hexafluoropropylene) (PVdF-HFP) co-polymer was prepared by phase inversion techniques using two different non-solvents.
In order to determine the required-hydrophilic lipophilic balance (rHLB) of basil oil, emulsions of basil oil were prepared by phase inversion temperature technique using water, Tween 80, and Span 80. Formulated emulsions were assessed for creaming (BE9; 9.8, BE10; 10.2), droplet size (BE18; 3.22 ± 0.09 μ m), and turbidity (BE18; 86.12 ± 2.1%).
Synthetic membranes prepared by a polymeric blend constituted of modified polyetheretherketone (PEEK-WC) and polyurethane (PU) and biodegradable chitosan membranes were developed by phase inversion technique and used in homotypic and organotypic culture systems.
Double emulsions created by phase inversion can be used for fast liquid liquid separation; therefore, the coalescence behaviors of these types of multiple emulsions need to be predictable for different physical properties and drop size ratios.
Amphiphilic polyethersulfone-block-poly 2-hydroxyethyl methacrylate) (polyethersulfone-block-poly 2-hydroxyethylsed polyethersulfone-block-poly 2-hydroxyethylpolyethersulfone-block-poly 2-hydroxyethyl
The polymeric catalytic membranes prepared by phase inversion technique have been successfully applied in the aerobic mineralization of phenol in water, which was used as an example of organic pollutant.
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