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polymer science (9) 9
poly (8) 8
adsorption (6) 6
engineering, chemical (6) 6
recovery (4) 4
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aqueous-solution (3) 3
chemistry, multidisciplinary (3) 3
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copolymerization (3) 3
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polymer (3) 3
polymerization (3) 3
removal (3) 3
carboxylic-acids (2) 2
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membran (2) 2
membrane extraction (2) 2
membranes (2) 2
microporous membrane (2) 2
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nanostructure (2) 2
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phenol, removal of (2) 2
poly membrane (2) 2
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polymers (2) 2
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polyvinylpyridin (2) 2
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4,4′-bpe: 4,4′-bipyridinethylene (1) 1
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aibn: azobisisobutyronitrile (1) 1
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ausbuchtung (1) 1
azido groups (1) 1
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Journal of Membrane Science, ISSN 0376-7388, 1991, Volume 62, Issue 2, pp. 219 - 232
Transport of phenol from an aqueous solution to butyl acetate through a microporous membrane made of crosslinked poly(4-vinylpyridine) (PVP) was studied. The... 
phenol, removal of | membrane extraction | poly(4-vinylpyridine) membrane | microporous membrane
Journal Article
JOURNAL OF MEMBRANE SCIENCE, ISSN 0376-7388, 10/1991, Volume 62, Issue 2, pp. 219 - 232
Transport of phenol from an aqueous solution to butyl acetate through a microporous membrane made of crosslinked poly(4-vinylpyridine) (PVP) was studied. The... 
ENGINEERING, CHEMICAL | RECOVERY | MEMBRANE EXTRACTION | POLYMER SCIENCE | REMOVAL | POLLUTANTS | MICROPOROUS MEMBRANE | PHENOL, REMOVAL OF | AQUATIC ENVIRONMENT | POLY(4-VINYLPYRIDINE) MEMBRANE
Journal Article
Langmuir, ISSN 0743-7463, 11/2015, Volume 31, Issue 44, pp. 12300 - 12306
Vacuum carbonization of organic precursors usually causes considerable structural damage and collapse of morphological features. However, for a polymer with... 
STORAGE | CONVERSION | MATERIALS SCIENCE, MULTIDISCIPLINARY | POLY(4-VINYLPYRIDINE) | GRAPHENE | ELECTRODES | MEMBRANES | CHEMISTRY, PHYSICAL | METAL-ORGANIC FRAMEWORK | NANOPOROUS CARBON | CHEMISTRY, MULTIDISCIPLINARY | HIERARCHICALLY POROUS CARBON
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 08/1993, Volume 49, Issue 5, pp. 799 - 805
Permeability of phenol from aqueous solution to organic solvent through a microporous membrane made of cross‐linked poly (4‐vinylpyridine) (polyvinylpyridine... 
CROSS-LINKED POLY(4-VINYLPYRIDINE) | RECOVERY | POLYMER SCIENCE | ORGANIC POLLUTANTS | REMOVAL | MICROPOROUS HYDROPHOBIC MEMBRANE | IMMOBILIZED INTERFACES | AQUATIC ENVIRONMENT | SOLVENT-EXTRACTION | AQUEOUS-SOLUTION | CARBOXYLIC-ACIDS
Journal Article
by Zhou, J and Cao, J and Huang, W and Huang, L and Wang, Y and Zhang, S and Yuan, Y and Hua, D
Chemical and Biochemical Engineering Quarterly, ISSN 0352-9568, 2013, Volume 27, Issue 4, pp. 431 - 437
Journal Article
Journal of Membrane Science, ISSN 0376-7388, 1999, Volume 152, Issue 2, pp. 211 - 225
Using multilayer composite hollow fiber membranes consisting of a sealing layer (silicone rubber), a selective layer (poly(4-vinylpyridine)), and a support... 
Gas separation | Pre-wetting | Poly(4-vinylpyridine) | Porous substrate | Multilayer composite membrane | Hollow fiber | ENGINEERING, CHEMICAL | POLYMER SCIENCE | poly(4-vinylpyridine) | gas separation | pre-wetting | porous substrate | AIR | multilayer composite membrane | hollow fiber | PERMEATION
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 2000, Volume 55, Issue 6, pp. 1093 - 1099
We have determined that the permeability and selectivity of ultrathin poly (4-vinyl pyridine) (PVP) material using the basic concept of microporous composite... 
Gas separation | Permeability | Poly(4-vinylpyridine) | Multilayer composite membrane | Brittle materials | ENGINEERING, CHEMICAL | brittle materials | TRANSPORT | poly(4-vinylpyridine) | gas separation | permeability | ASYMMETRIC MEMBRANES | multilayer composite membrane | AIR-SEPARATION | COMPOSITE HOLLOW FIBERS
Journal Article
Journal of Coordination Chemistry, ISSN 0095-8972, 05/2017, Volume 70, Issue 9, pp. 1468 - 1527
This review summarizes recent advances in the chemistry of metal chelate monomers. Depending on the character of bonding of the metal to the chelating... 
polymerization | AFM: atomic force microscopy | DLS: dynamic light scattering | THF: tetrahydrofuran | polynuclear metal chelates | HEMA: 2-hydroxyethylmethacrylate | PMC: polymeric metal chelate | MLCT: metal-to-ligand charge transfer | NBE: norbornene | polycondensation | PDI: polydispersity index | 4VP: 4-vinylpyridine | M-Pc: metal-phthalocyanine | COD: 1,5-cyclooctadiene | AIBN: azobisisobutyronitrile | DMF: N,N-dimethylformamide | DMSO: dimethylsulfoxide | copolymerization | MWCNT: multi-walled carbon nanotubes | PVK: poly(vinylcarbazole) | salen: N,N′-bis(salicylidene)ethylenediamine | dbm: dibenzoylmethane | NIPAM: N-isopropylacrylamide | Py: pyridine | ROMP: ring-open metathesis polymerization | D-A: donor-acceptor | Metal chelate monomers | NVK: N-vinylcarbazole | ATRP: atom transfer radical polymerization | ROP: ring-opening polymerization | metal compound | number-average molecular weight | polymeric metal chelates | AA: acrylic acid | ITO: indium-tin oxide | HQ: 8-hydroxyquinoline | glass-transition temperature | MCM: metal chelate monomer | RAFT: reversible addition fragmentation transfer polymerization | molecular metal chelates | PS: polystyrene | decomposition temperature | electropolymerization | PMMA: polymethylmethacrylate | bpy: 2,2′-bipyridine | EDOT: 3,4-ethylenedioxythiophene | M-Pp: metal-porphyrin | 4,4′-bpe: 4,4′-bipyridinethylene | weight-average molecular weight | intracomplex compounds | salphen: N,N′-phenylenebis(salicylideneimine) | ppy: 2-phenylpyridine | phen: 1,10-phenanthroline | SEM: scanning electron microscopy | MMA: methyl methacrylate | CuAAC: Cu(I) catalyzed azide-alkyne cycloaddition | HTTA: 2-thenoyltrifluoroacetone | tpy: 2,2′,6′,2′′-terpyridine | macrocyclic complexes | GPC: gel-penetrating chromatography | DP: polymerization degree | PEG: polyethylene glycol | CBBD: 2-cyanobutan-2-yl benzodithioate | WHITE-LIGHT | FEATURING THENOYLTRIFLUOROACETONE | RESONANCE ENERGY-TRANSFER | NEAR-INFRARED ELECTROCHROMISM | PI-CONJUGATED POLYMERS | CHEMISTRY, INORGANIC & NUCLEAR | CYCLOMETALATED IRIDIUM(III) COMPLEX | SALEN COMPLEXES | PHOTOVOLTAIC PROPERTIES | SCHIFF-BASE COMPLEXES | ELECTROPOLYMERIZED FILMS
Journal Article
Macromolecular Materials and Engineering, ISSN 1438-7492, 02/2001, Volume 286, Issue 2, pp. 63 - 87
Currently studies on antibacterial macromolecules, i. e., bactericidal and bacteriostatic ones, have been made to develop a new utilization field of polymeric... 
ANTIMICROBIAL PROPERTIES | BIOLOGICALLY-ACTIVE POLYCATIONS | MAIN-CHAIN | POLYMER SCIENCE | PYRIDINIUM-TYPE POLYMERS | CATIONIC BIOCIDES | MATERIALS SCIENCE, MULTIDISCIPLINARY | 1,4-DIVINYLBENZENE COPOLYMER BEADS | ESCHERICHIA-COLI | QUATERNARY AMMONIUM GROUPS | LINKED POLY(VINYLPYRIDINIUM HALIDE) | POLYMERIC PHOSPHONIUM SALTS
Journal Article
Chemical Society Reviews, ISSN 0306-0012, 11/2016, Volume 45, Issue 23, pp. 6627 - 6656
Journal Article
Analytical Methods, ISSN 1759-9660, 11/2018, Volume 1, Issue 45, pp. 5416 - 5422
Journal Article
Designed Monomers and Polymers, ISSN 1385-772X, 01/2003, Volume 6, Issue 3, pp. 211 - 236
Acetic acid is one of the basic chemical commodities having great industrial importance and its recycling after separation from aqueous stream is industrially... 
selectivity | flux | membrane | Pervaporation | Flux | Membrane | Selectivity | POLYMER SCIENCE | MODIFIED POLY(4-METHYL-1-PENTENE) MEMBRANE | DEHYDRATION | ALGINATE | POLY(VINYL ALCOHOL) MEMBRANES | DIFFUSION | COMPOSITE MEMBRANES | pervaporation
Journal Article
Soft Matter, ISSN 1744-683X, 9/2010, Volume 6, Issue 19, pp. 4613 - 463
Journal Article
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