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You searched for: Is Part Of Progress in polymer science. Volume 51(2015:Dec.)Limit your search
- 547.7 7
- Polymerization -- Periodicals 7
- Polymers -- Industrial applications -- Periodicals 7
- Polymers -- Periodicals 7
- Polymères -- Périodiques 7
- Polymérisation -- Périodiques 7
- ABDPP arylene-N, N′-bis(2, 2-dimethyl-1, 3-propanediol phosphoramidate) -- ABS acrylonitrile–butadiene–styrene copolymer -- AlPi aluminium diethylphosphinate -- AMS ammonium sulfamate -- APb dibasic ammonium phosphate -- APP ammonium poly(phosphate) -- ATH aluminium hydroxide -- BASPB bis-aminobenzyl spirocylic pentaerythritol bisphosphonate -- BDP bisphenol A bis(diphenyl phosphate) -- BL bilayer -- BLEVE boiling liquid expanding vapor explosion -- b-MAP melamine salt of 3, 9-di-hydroxy-2, 4, 8, 10-tetraoxa-3, 9-diphosphaspiro[5, 5]-undecane-3, 9-dioxide -- BSi boron silicon containing preceramic oligomer -- CD cyclodextrins -- CFA charring–foaming agent -- CNT carbon nanotube -- CPPA cyclic polyphosphate -- DBDPE decabrominated diphenyethane -- DMP-RDP tetra-2, 6-dimethyl phenyl resorcinol diphosphate -- DNA deoxyribonucleic acid -- DPER dipentaerythritol -- DPPOSS dodecaphenyl polyhedral oligomeric silsesquioxane -- DPSPB poly(2, 2-dimethylpropylene spirocyclic pentaerythritol bisphosphonate) -- EBuAMA ethylene–butylacrylate–maleic anhydride -- EEE electrical and electronic equipment -- EG expandable graphite -- EPDM ethylene–propylene–diene terpolymer -- FA fly ash -- FR flame retardant -- FRPOSS poly(vinylsilsesquioxane) polyhedral oligomeric silsesquioxane -- FTIR Fourier transformed infrared spectroscopy -- GF glass fibers -- GF-PA66 poly(amide) 6, 6 reinforced with glass fibers -- GFWI glow wire flammability index -- GIC graphite intercalation compounds -- GNP graphene nanoplatelet -- HCFA hyperbranched charring and foaming agent -- HDPE high density poly(ethylene) -- HEDP 1-hydroxy ethylidene-1, 1-diphosphonic acid -- HIPS high impact poly(styrene) -- HNCP hexakis(4-nitrophenoxy) cyclotriphosphazene -- HRC heat release capacity -- HRR heat of release rate -- IFR intumescent flame retardant -- LaB lanthanum borate -- LbL layer-by-layer -- LDPE low density poly(ethylene) -- LLDPE linear low density poly(ethylene) -- LOI limiting oxygen index -- MA melamine -- MAPP maleic anhydride-g-polypropylene -- MC melamine cyanurate -- MCC micro-scale cone calorimetry -- Melabis melamine salt of bis(1-oxo-2, 6, 7-trioxa-1-phosphabicyclo[2.2.2]octan-4-ylmethanol)phosphate -- MH magnesium hydroxide -- MLR mass loss rate -- MMT montmorillonite -- MOPO 4-(5, 5-dimethyl-2-oxo-1, 3, 2-dioxaphosphorinan-2-yloxymethyl)-2, 6, 7-trioxa-1-phospha-bicyclo[2.2.2]octane-1-oxide -- MP melamine phosphate -- MPP melamine salt of pentaerythritol phosphate -- MWNT multi wall carbon nanotube -- NiPCS nickel chitosan phosphate -- NP novolac phenol resins -- NS β-CD nanosponges -- OMMT organo-modified montmorillonite -- OMPOSS octamethyl polyhedral oligomeric silsesquioxane -- OP950 zinc phosphinate -- PA6 poly(amide) 6 -- PA66 poly(amide) 6, 6 -- PAH poly(allylamine) -- PAHPA N-(2-(5, 5-dimethyl-1, 3, 2-dioxaphosphinyl-2-ylamino)-hexyl)acetamide-2-propyl acid -- PBS poly(butylene succinate) -- PBT poly(butylene terephthalate) -- PC poly[2, 2-propane(bisphenol) carbonate] or poly(carbonate) -- PCFC pyrolysis-combustion flow calorimetry -- PCPP poly(cyclotriphosphazene-co-pentaerythritol) -- PDAP 1-oxo-2, 6, 7-trioxa-1-phosphabicyclo-[2.2.2]octane-methyl diallyl phosphate -- PDMN PET-co-9, 10-dihydro-10-[2, 3-di(hydroxycarbonyl)propyl]-phosphaphenanthrene-10-oxide -- PDSPB poly(diaminodiphenyl methane spirocyclic pentaerythritol bisphosphonate) -- PE poly(ethylene) -- PECVD plasma-enhanced chemical vapor deposition -- PEPA 1-oxo-2, 6, 7-trioxa-1-phosphabicyclo[2.2.2]octane-4-methanol phosphate -- PEPS poly ethanediamine spirocyclic pentaerythritol bisphosphonate -- PER pentaerythritol -- PET poly(ethylene terephthalate) -- PFAPP ammonium polyphosphate encapsulated with a phenolic resin -- PHBS poly(3-hydroxybutyrate-co-4-hydroxybutyrate) -- PhEt diethyl phosphoramidate -- PHRR peak of heat release rate -- PLA poly(lactic acid) -- PMMA poly(methyl methacrylate) -- POPO 2-phenyl-1, 3, 2 oxazaphospholidine 2-oxide -- POSS polyhedral oligomeric silsesquioxane -- PP polypropylene -- PPA polyphosphoric acid -- PPG poly(propylene glycol) -- PPR poly(pseudorotaxane) -- PS poly(styrene) -- PTA phospho-tungstic acid -- PU poly(urethane) -- PVA poly(vinyl alcohol) -- PVC poly(vinyl chloride) -- PY ammonium pyrophosphate -- QL quadlayer -- RDB resorcinol bis(diphenyl phosphate) -- SBR styrene, butadiene rubber -- SBS styrene–butadiene–styrene copolymer -- SEM scanning electron microscopy -- SPPC stearylphosphonic chloride -- SPR smoke production rate -- TCPP tris(2-chloroisopropyl) phosphate -- TEP triethyl phosphate -- TGA thermogravimetric analysis -- THE total heat evolved -- THR total heat release -- TPO polypropylene/poly(octylene-co-ethylene) blends -- TPP triphenyl phosphate -- TPS thermoplastic starch -- TPU thermoplastic poly(urethane) -- TrPP triphenyl phosphite -- TSP total smoke production -- TSR total smoke release -- TSPB toluidine spirocyclic pentaerythritol bisphosphonate -- TTI time to ignition -- UPR unsaturated polyester resin -- xGnP exfoliated graphite nanoplatelet -- XPS X-ray photoelectron spectroscopy -- ZHS zinc hydroxystannate -- Zn–Al LDH zinc aluminium layered double hydroxide -- ZnB zinc borate -- ZS zinc stannate 1
- ATBC acetyl tributyl citrate -- ATR attenuated total reflection -- CFE chlorofluoroethylene -- CNFs carbon nanofibers -- CNTs carbon nanotubes -- CO cyclohexanone -- CTAB cetyltrimethlammonium bromide -- DBP dibutyl phthalate -- DEP diethyl phthalate -- DFT density functional theory -- DMAc dimethyl acetamide -- DMF dimethyl formamide -- DMP dimethyl phthalate -- DMSO dimethyl sulfoxide -- DOP dioctyl phthalate -- DPK diphenyl ketone -- DSC differential scanning calorimetry -- EC ethylene carbonate -- FTIR Fourier transform infrared spectroscopy -- FT-Raman Fourier transform Raman -- GO graphene oxide -- IL ionic liquid -- IR infrared radiation -- LB Langmuir–Blodgett -- MD membrane distillation -- MEK methyl ethyl ketone -- MF microfiltration -- MMT montmorillonite -- MWNTs multi-walled carbon nanotubes -- NIPS non-solvent induced phase separation -- NMR nuclear magnetic resonance -- OMS organically modified silicate -- PAS photoacoustic spectroscopy -- PEG poly(ethylene glycol) -- PGC propylene glycol carbonate -- PMMA poly(methyl methacrylate) -- POM polarizing optical microscopy -- POMA poly(o-methoxyaniline) -- PV pervaporation -- PVA poly(vinyl acetate) -- PVDF poly(vinylidene fluoride) -- P(VDF-co-CTFE) poly(vinylidene fluoride-co-chlorotrifluoroethylene) -- P(VDF-co-HFP) poly(vinylidene fluoride-co-hexafluoropropene) -- P(VDF-co-TFE) poly(vinylidene fluoride-co-tetrafluoroethylene) -- P(VDF-TrFE) poly(vinylidene fluoride-trifluoroethylene) -- PVP polyvinylpyrrolidone -- γ-BL γ-butyrolactone -- SAN poly(styrene-co-acrylonitrile) -- SDS sodium dodecyl sulfate -- SEM scanning electron microscope -- SHI swift heavy ions -- TBAC tetrabutylammonium chloride -- TCPS tissue culture polystyrene plate -- TGTG′ trans-gauche-trans-gauche′ -- THF tetrahydrofuran -- TIPS thermally induced phase separation -- TTT trans-trans-trans -- TTTGTTTG′ trans-trans-trans-gauche-trans-trans-trans-gauche′ -- UF ultrafiltration -- VIPS vapor induced phase separation -- WAXD wide-angle X-ray diffraction -- XRD X-ray diffraction 1
- Al2O3 NPs alumina nanoparticles -- DNPH 2, 4-dinitrophenylhydrazine -- FA formaldehyde -- HDPE high density polyethylene -- NCs nanocomposites -- PAI poly(amide-imide) -- PAR 4-(2-pyridylazo) resorcinol -- PC polycarbonate -- PEI polyethylenemine -- PET poly(ethylene) terephthalate -- PMMA poly(methyl methacrylate) -- PVA poly(vinyl alcohol) -- QPVA quaternized poly(vinyl alcohol) -- SDS sodium dodecyl sulfate 1
- Dielectric elastomers -- Actuators -- Artificial muscle -- Dielectric permittivity 1