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Journal of Applied Polymer Science, ISSN 0021-8995, 01/2014, Volume 131, Issue 1, pp. np - n/a
ABSTRACT Polyimide (PI) fabric was coated with composite films composed of poly(N‐benzyloxycarbonyl‐3,4‐dihydroxyphenylalanine) (PNBD) and montmorillonite... 
composites | flame retardance | coatings | clay | self‐assembly | self-assembly | POLYMER SCIENCE | PERFORMANCE | BEHAVIOR | SHEETS | THERMAL-DEGRADATION | ADHESION | NANOCOMPOSITES | ASSEMBLIES | TEMPERATURES | MONTMORILLONITE | BIOMEDICAL APPLICATIONS | Textile fabrics | Clay | Montmorillonite | Dopa | Resveratrol | Scanning electron microscopy | Residues | Durability | Fabrics | Washing | Standards | Assembly | Polyimide resins
Journal Article
Polymer degradation and stability, ISSN 0141-3910, 2019, Volume 163, pp. 15 - 24
...) with different ratios to get good flame retardancy. The effects of PHB-apa on curing reaction behavior, heat resistance and thermal stability of the copolymers of PHB-apa and PH-ddm, poly(PH/PHB... 
Cone calorimeter | Flame retardancy | Heat resistance | Py-GC/MS | Polybenzoxazine | FLAMMABILITY PROPERTIES | POLYMERS | POLYMER SCIENCE | POLYBENZOXAZINES | COPOLYMERS | HALOGEN | MECHANICAL-PROPERTIES | RESINS | THERMAL-DEGRADATION | NANOCOMPOSITES | THERMOSETS | Fireproofing agents | Analysis | Combustion | Thermogravimetric analysis | Cone calorimeters | Flame retardants | Intumescent | Benzoxazines | Aldehydes | Thermal stability | Copolymers | Thermal resistance | Morphology | Curing | Polymers
Journal Article
Journal of Colloid And Interface Science, ISSN 0021-9797, 09/2016, Volume 477, pp. 74 - 82
Eco-friendly functionalized recycled paper with superhydrophobicity and flame-retardancy has been demonstrated which can put up with the invasion of water and fire... 
Oil-water separation | Superhydrophobic | Recycled paper | Eco-friendly | Flame-retardancy | WETTABILITY | ROBUST | CHEMISTRY, PHYSICAL | SURFACES | Environmental aspects | Combustion | Separation | Colloids | Paper | Displays | Stearic acid | Fuels | Recycled
Journal Article
Polymer (Guilford), ISSN 0032-3861, 2015, Volume 68, pp. 262 - 269
A flame retardant, tri-(3-DOPO-2-hydroxypropan-1-yl)-1, 3, 5-triazine-2, 4, 6-trione (TGIC-DOPO) containing both phosphaphenanthrene and triazine-trione... 
Flame retardant | Epoxy resin | DOPO | PHOSPHORUS | POLYMER SCIENCE | COMPOUND | HALOGEN | MECHANICAL-PROPERTIES | PHOSPHAPHENANTHRENE | CARBON NANOTUBES | RESINS | CYCLOTRIPHOSPHAZENE | THERMAL-BEHAVIOR | FIRE | Methane | Thermoplastics | Bisphenol-A | Fireproofing agents | Epoxy resins | Combustion | Free radicals (Chemistry) | Phenol | Free radicals | Thermosetting resins | Ethers | Carbon | Ratings | Quenching
Journal Article
Polymer degradation and stability, ISSN 0141-3910, 2010, Volume 95, Issue 9, pp. 1928 - 1933
α-Zr phosphate (hereafter referred to as ZrP) based composites were prepared by melt blending in order to improve the flame retardancy properties of polyamide 6 (PA6... 
EVA | Flame retardancy | PA6 | α-Zr phosphate | PET | PP | POLYMER SCIENCE | BEHAVIOR | phosphate | MEMBRANES | PILLARED METAL(IV) PHOSPHATES | AGENT | OPERATION | FIRE | CLAY NANOCOMPOSITE | alpha-Zr
Journal Article
Polymer degradation and stability, ISSN 0141-3910, 2011, Volume 96, Issue 5, pp. 875 - 884
Journal Article
Polymer degradation and stability, ISSN 0141-3910, 2006, Volume 91, Issue 6, pp. 1380 - 1386
...). Effect of CFA on flame retardancy, thermal degradation and mechanical properties of intumescent flame retardant polypropylene (PP) system (IFR–PP system... 
Flame retardancy | Intumescent flame retardant | Polypropylene | Triazine polymer | Thermal degradation | POLYMERS | POLYMER SCIENCE | MECHANISM | triazine polymer | polypropylene | COMPOSITES | MIXTURES | AMMONIUM POLYPHOSPHATE | thermal degradation | intumescent flame retardant | FORMULATIONS | FIRE RETARDANT | flame retardancy | Fireproofing agents | Ethanolamines | Zeolites | Ethylenediamines
Journal Article
Polymer degradation and stability, ISSN 0141-3910, 2010, Volume 95, Issue 12, pp. 2541 - 2546
Journal Article
Carbohydrate polymers, ISSN 0144-8617, 2012, Volume 87, Issue 3, pp. 2093 - 2099
...) in order to get inorganic phases able to improve the thermal stability and flame retardancy of the fabric, without changing its mechanical features... 
Flame retardancy | Sol–gel processes | Cotton | Mechanical properties, abrasion resistance | Sol-gel processes | POLYMER SCIENCE | DECOMPOSITION | CHEMISTRY, ORGANIC | DEGRADATION | CHEMISTRY, APPLIED | METAL-IONS | Mechanical properties | Cotton textiles | Coatings industry | Coatings | Cotton fabrics | Analysis
Journal Article
Fire and materials, ISSN 0308-0501, 2013, Volume 37, Issue 4, pp. 259 - 279
SUMMARY Flame retardancy of polymeric materials is conducted to provide fire protection to flammable consumer goods, as well as to mitigate fire growth in a wide range of fires... 
flame retardants | sustainability | fire safety | PHOSPHORUS | FIRES | EMISSIONS | MATERIALS SCIENCE, MULTIDISCIPLINARY | DECOMPOSITION | LAYERED-SILICATE NANOCOMPOSITES | MECHANISMS | NANOPARTICLES | EXPANDABLE GRAPHITE | SYSTEMS | COPOLYMER | Fireproofing agents | Polymers
Journal Article
Applied surface science, ISSN 0169-4332, 2019, Volume 479, pp. 765 - 775
Journal Article