Chemistry Letters, ISSN 0366-7022, 06/2015, Volume 44, Issue 6, p. 855
In this study, four different types of poly(vinylidene fluoride) (PVDF) membranes were prepared by blending with poly(vinylidene...
Journal Article
Applied Catalysis A: General, ISSN 0926-860X, 03/2005, Volume 280, Issue 2, pp. 125 - 131
Pt-Pd bimetal catalysts were prepared in order to develop and investigate catalysts with excellent activity and stability for benzene destruction. In the...
Platinum | Combustion | Palladium | XPS
Platinum | Combustion | Palladium | XPS
Journal Article
Chemistry Letters, ISSN 0366-7022, 10/2015, Volume 44, Issue 10, p. 1404
Hydrophobic Poly(vinylidene fluoride) (PVDF) ultrafiltration (UF) membranes were successfully wetted in m-phenylenediamine (MPD) solution by applying wetting...
Journal Article
Chemistry Letters, ISSN 0366-7022, 10/2015, Volume 44, Issue 10, pp. 1404 - 1406
Hydrophobic Poly(vinylidene fluoride) (PVDF) ultrafiltration (UF) membranes were successfully wetted in m-phenylenediamine (MPD) solution by applying wetting...
NANOFILTRATION MEMBRANES | PVDF | CHEMISTRY, MULTIDISCIPLINARY | PERFORMANCE | MORPHOLOGY | OSMOSIS
NANOFILTRATION MEMBRANES | PVDF | CHEMISTRY, MULTIDISCIPLINARY | PERFORMANCE | MORPHOLOGY | OSMOSIS
Journal Article
Chemistry Letters, ISSN 0366-7022, 01/2015, Volume 44, Issue 1, p. 85
Poly(vinylidene fluoride) (PVDF) membrane blended with synthesized graft poly(vinylidene fluoride)-graft-poly(potassiosulfonatopropyl methacrylate)...
Journal Article
6.
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Preparation Method of PVDF Membrane with Both Hydrophilicity and Smooth Surface Morphology
Chemistry Letters, ISSN 0366-7022, 6/2015, Volume 44, Issue 6, pp. 855 - 857
In this study, four different types of poly(vinylidene fluoride) (PVDF) membranes were prepared by blending with poly(vinylidene...
ULTRAFILTRATION | CHEMISTRY, MULTIDISCIPLINARY
ULTRAFILTRATION | CHEMISTRY, MULTIDISCIPLINARY
Journal Article
Desalination, ISSN 0011-9164, 01/2008, Volume 219, Issue 1-3, pp. 48 - 56
We report on novel polyamide (PA) nanocomposite membranes containing high loading of TiO nanoparticles synthesized via in-situ interfacial polymerization....
Interfacial polymerization | Nanofiltration | Nanocomposite | TiO | DESIGN | ETHER SULFONE KETONE | PERFORMANCE | WATER RESOURCES | nanofiltration | interfacial polymerization | ENGINEERING, CHEMICAL | PHASE-BEHAVIOR | WASTE-WATER | RO MEMBRANE | nanocomposite | COMPOSITE TFC MEMBRANE | TiO2
Interfacial polymerization | Nanofiltration | Nanocomposite | TiO | DESIGN | ETHER SULFONE KETONE | PERFORMANCE | WATER RESOURCES | nanofiltration | interfacial polymerization | ENGINEERING, CHEMICAL | PHASE-BEHAVIOR | WASTE-WATER | RO MEMBRANE | nanocomposite | COMPOSITE TFC MEMBRANE | TiO2
Journal Article
Energies, 12/2016, Volume 9, Issue 12
Journal Article
Separation and Purification Technology, ISSN 1383-5866, 05/2015, Volume 146, pp. 187 - 191
In this study, it was evident that poly(vinylidene fluoride) (PVDF) membrane with a smooth surface (B2) displayed normalized flux as well as permeate flux...
Surface roughness | Permeate flux | Poly(vinylidene fluoride) (PVDF) | Antifouling characteristics | ENGINEERING, CHEMICAL | PERFORMANCE | DISTILLATION | HOLLOW-FIBER MEMBRANES | PVDF | MORPHOLOGY | HUMIC-ACID | Membranes | Purification | Flux | Polyvinylidene fluorides | Hydroxyapatite | Porosity | Contact angle
Surface roughness | Permeate flux | Poly(vinylidene fluoride) (PVDF) | Antifouling characteristics | ENGINEERING, CHEMICAL | PERFORMANCE | DISTILLATION | HOLLOW-FIBER MEMBRANES | PVDF | MORPHOLOGY | HUMIC-ACID | Membranes | Purification | Flux | Polyvinylidene fluorides | Hydroxyapatite | Porosity | Contact angle
Journal Article
Journal of Polymer Science, Part B: Polymer Physics, ISSN 0887-6266, 06/2007, Volume 45, Issue 11, pp. 1283 - 1290
Journal Article
Nature Photonics, ISSN 1749-4885, 11/2017, Volume 11, Issue 11, pp. 708 - 713
The hard X-ray free-electron laser at the Pohang Accelerator Laboratory (PAL-XFEL) in the Republic of Korea achieved saturation of a 0.144 nm free-electron...
PAL-XFEL | DESIGN | PHYSICS, APPLIED | BEAMLINE | FACILITY | OPTICS | UNDULATOR | Timing jitter | Femtosecond | Vibration | Laboratories | Photon beams | Radiation | Stability analysis | Laser beams | Superconducting supercolliders | Light sources | Alignment | Electron beams | Lasers | Spectrum analysis | Orbital stability | Acceleration | Coherent light | Electrons | State of the art | Free electron lasers | X ray spectra
PAL-XFEL | DESIGN | PHYSICS, APPLIED | BEAMLINE | FACILITY | OPTICS | UNDULATOR | Timing jitter | Femtosecond | Vibration | Laboratories | Photon beams | Radiation | Stability analysis | Laser beams | Superconducting supercolliders | Light sources | Alignment | Electron beams | Lasers | Spectrum analysis | Orbital stability | Acceleration | Coherent light | Electrons | State of the art | Free electron lasers | X ray spectra
Journal Article
Separation and Purification Technology, ISSN 1383-5866, 10/2017, Volume 187, pp. 274 - 284
The aim of the present study is to confirm the extent to which smooth membrane surface (A2) improves antifouling characteristics compared with rough membrane...
Water contact angle | Surface roughness | Antifouling property | Surface morphology | Microfiltration (MF) | ULTRAFILTRATION MEMBRANES | FILTRATION | NOM | ENGINEERING, CHEMICAL | DISTILLATION | FABRICATION | MF/UF | PVDF MEMBRANE | NATURAL ORGANIC-MATTER | HUMIC-ACID | Atomic force microscopy | X-ray spectroscopy | Analysis | Humic acid | Engineering Sciences | domain_spi.energ
Water contact angle | Surface roughness | Antifouling property | Surface morphology | Microfiltration (MF) | ULTRAFILTRATION MEMBRANES | FILTRATION | NOM | ENGINEERING, CHEMICAL | DISTILLATION | FABRICATION | MF/UF | PVDF MEMBRANE | NATURAL ORGANIC-MATTER | HUMIC-ACID | Atomic force microscopy | X-ray spectroscopy | Analysis | Humic acid | Engineering Sciences | domain_spi.energ
Journal Article
Chemical Communications, ISSN 1359-7345, 2002, Volume 2, Issue 22, pp. 2732 - 2733
Journal Article
14.
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Formation of silver nanoparticles created in situ in an amphiphilic block copolymer film
Journal of Applied Polymer Science, ISSN 0021-8995, 11/2008, Volume 110, Issue 4, pp. 2352 - 2357
In this work, silver nanoparticles were synthesized with an amphiphilic diblock copolymer, polystyrene‐block‐poly(1‐vinyl‐2‐pyrrolidone) (PS‐b‐PVP), as a...
atom transfer radical polymerization (ATRP) | block copolymers | nanocomposites | Nanocomposites | Atom transfer radical polymerization (ATRP) | Block copolymers | MATRIX | POLYMER SCIENCE | SALT COMPLEX MEMBRANES | TEMPLATED CHEMISTRY | TRANSFER RADICAL POLYMERIZATION | ARRAYS | COMPOSITE | REDUCTION | PI-COMPLEXES | FACILITATED OLEFIN TRANSPORT
atom transfer radical polymerization (ATRP) | block copolymers | nanocomposites | Nanocomposites | Atom transfer radical polymerization (ATRP) | Block copolymers | MATRIX | POLYMER SCIENCE | SALT COMPLEX MEMBRANES | TEMPLATED CHEMISTRY | TRANSFER RADICAL POLYMERIZATION | ARRAYS | COMPOSITE | REDUCTION | PI-COMPLEXES | FACILITATED OLEFIN TRANSPORT
Journal Article
Polymers for Advanced Technologies, ISSN 1042-7147, 11/2008, Volume 19, Issue 11, pp. 1643 - 1648
Graft copolymers comprising poly(vinylidene fluoride‐co‐chlorotrifluoroethylene) backbone and poly(styrene sulfonic acid) side chains, i.e....
atom transfer radical polymerization (ATRP) | graft copolymer | composite membrane | nanofiltration | Nanofiltration | Graft copolymer | Atom transfer radical polymerization (ATRP) | Composite membrane | POLYMER SCIENCE | GRAFT-COPOLYMERS | AQUEOUS-MEDIA | AMBIENT-TEMPERATURE | FUEL-CELLS | TRANSFER RADICAL POLYMERIZATION | COMPOSITE MEMBRANES | FLUORIDE | FILMS | SURFACE | FACILITATED OLEFIN TRANSPORT
atom transfer radical polymerization (ATRP) | graft copolymer | composite membrane | nanofiltration | Nanofiltration | Graft copolymer | Atom transfer radical polymerization (ATRP) | Composite membrane | POLYMER SCIENCE | GRAFT-COPOLYMERS | AQUEOUS-MEDIA | AMBIENT-TEMPERATURE | FUEL-CELLS | TRANSFER RADICAL POLYMERIZATION | COMPOSITE MEMBRANES | FLUORIDE | FILMS | SURFACE | FACILITATED OLEFIN TRANSPORT
Journal Article
Polymers for Advanced Technologies, ISSN 1042-7147, 07/2007, Volume 18, Issue 7, pp. 562 - 568
Microbial biofouling is one of the major obstacles for reaching the ultimate goal of realizing a high permeability over a prolonged period of nanofiltration...
antibiofouling | polyamide | silver nanoparticles | nanofiltration | thin film composite | Polyamide | Nanofiltration | Thin film composite | Silver nanoparticles | Antibiofouling | POLYMER SCIENCE | REDUCTION | EFFICACY | SALT COMPLEX MEMBRANES | BACTERIAL | METAL-IONS
antibiofouling | polyamide | silver nanoparticles | nanofiltration | thin film composite | Polyamide | Nanofiltration | Thin film composite | Silver nanoparticles | Antibiofouling | POLYMER SCIENCE | REDUCTION | EFFICACY | SALT COMPLEX MEMBRANES | BACTERIAL | METAL-IONS
Journal Article
Microporous and Mesoporous Materials, ISSN 1387-1811, 09/2004, Volume 74, Issue 1-3, pp. 143 - 155
Mesoporous silica molecular sieves MCM-41 containing zinc and aluminum ions (Zn-Al-MCM-41) with Si/(Zn + Al) ratio equal to 75, 151, 228, 304 and 380 and only...
Lewis acidity | Bronsted acidity | Hydrothermal stability | Al-MCM-41 | Zn-Al-MCM-41 | USA | STABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | MOLECULAR-SIEVE MCM-41 | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | bronsted acidity | ALUMINUM | hydrothermal stability | NMR | ZEOLITES | CHEMISTRY, APPLIED | TECHNOLOGY
Lewis acidity | Bronsted acidity | Hydrothermal stability | Al-MCM-41 | Zn-Al-MCM-41 | USA | STABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | MOLECULAR-SIEVE MCM-41 | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | bronsted acidity | ALUMINUM | hydrothermal stability | NMR | ZEOLITES | CHEMISTRY, APPLIED | TECHNOLOGY
Journal Article
Thin Solid Films, ISSN 0040-6090, 02/2017, Volume 624, pp. 136 - 143
This study attempts to prepare thin film composite (TFC) polyamide (PA) membrane using polyvinylidene fluoride (PVDF) as support membrane. PVDF has superior...
Thin films | Nanofiltration | Polyvinylidene fluoride | Polyamide membrane | Composite | Hydrophobic support membrane | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | PERMEABILITY | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | REVERSE-OSMOSIS MEMBRANES | PHYSIOCHEMICAL PROPERTIES | INTERFACIAL POLYMERIZATION | ATOMIC-FORCE MICROSCOPY | HIGH-FLUX | ELECTRODIALYSIS | SEPARATION | MATERIALS SCIENCE, COATINGS & FILMS | WATER | Atomic force microscopy | Polyamides | Polymerization | Fluorine compounds | X-ray spectroscopy | Dielectric films | Methods | Sewer systems
Thin films | Nanofiltration | Polyvinylidene fluoride | Polyamide membrane | Composite | Hydrophobic support membrane | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | PERMEABILITY | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | REVERSE-OSMOSIS MEMBRANES | PHYSIOCHEMICAL PROPERTIES | INTERFACIAL POLYMERIZATION | ATOMIC-FORCE MICROSCOPY | HIGH-FLUX | ELECTRODIALYSIS | SEPARATION | MATERIALS SCIENCE, COATINGS & FILMS | WATER | Atomic force microscopy | Polyamides | Polymerization | Fluorine compounds | X-ray spectroscopy | Dielectric films | Methods | Sewer systems
Journal Article
Reactive and Functional Polymers, ISSN 1381-5148, 02/2016, Volume 99, pp. 114 - 121
Cellulose acetate (CA) membranes, which are highly hydrophilic, have the advantage of being highly resistant to fouling phenomena and economically affordable....
Viscosity | Cross-liking | Compaction | Cellulose acetate | Mechanical strength | PART I | POLYMER SCIENCE | PERFORMANCE | POLYSULFONE MEMBRANE | ENGINEERING, CHEMICAL | LINKING | HYDROPHILICITY | HOLLOW FIBERS | SEPARATION | CHEMISTRY, APPLIED | NANOFILTRATION MEMBRANE | WATER-TREATMENT | MORPHOLOGY | Cellulose | Corrosion resistance | Dopes | Membranes | Ultrafiltration | Crosslinking | Strength
Viscosity | Cross-liking | Compaction | Cellulose acetate | Mechanical strength | PART I | POLYMER SCIENCE | PERFORMANCE | POLYSULFONE MEMBRANE | ENGINEERING, CHEMICAL | LINKING | HYDROPHILICITY | HOLLOW FIBERS | SEPARATION | CHEMISTRY, APPLIED | NANOFILTRATION MEMBRANE | WATER-TREATMENT | MORPHOLOGY | Cellulose | Corrosion resistance | Dopes | Membranes | Ultrafiltration | Crosslinking | Strength
Journal Article
Journal of Membrane Science, ISSN 0376-7388, 2010, Volume 351, Issue 1, pp. 141 - 148
Flat sheet gas separation membranes of polyethersulfone (PES), polyimide (Matrimid, MI) and their blends were fabricated by a spin casting method followed by a...
Polyethersulfone | Demixing gap | Matrimid | Dense layer | Permeance | Compatibility | Diffusion coefficient | Macrovoid | TGA | POLYMER SCIENCE | PERMEABILITY | PERFORMANCE | CROSS-LINKING | ASYMMETRIC MEMBRANES | THERMOGRAVIMETRY | ENGINEERING, CHEMICAL | THERMODYNAMICS | MIXED MATRIX MEMBRANES | POLYMERIC MEMBRANES | HOLLOW-FIBER MEMBRANES | PERMEATION
Polyethersulfone | Demixing gap | Matrimid | Dense layer | Permeance | Compatibility | Diffusion coefficient | Macrovoid | TGA | POLYMER SCIENCE | PERMEABILITY | PERFORMANCE | CROSS-LINKING | ASYMMETRIC MEMBRANES | THERMOGRAVIMETRY | ENGINEERING, CHEMICAL | THERMODYNAMICS | MIXED MATRIX MEMBRANES | POLYMERIC MEMBRANES | HOLLOW-FIBER MEMBRANES | PERMEATION
Journal Article
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