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Journal Article
RSC advances, ISSN 2046-2069, 2015, Volume 5, Issue 31, pp. 24239 - 24263
...RSC Advances REVIEW Cotton fl ame retardancy: state of the art and future perspectives Jenny Alongi * and Giulio Malucelli As clearly reported in the scientifi c... 
THERMAL-DEGRADATION | CELLULOSIC INSULATION | PHOSPHORYLATED POLYOLS | AMMONIUM POLYPHOSPHATE | BY-LAYER ARCHITECTURES | FIBER-INTUMESCENT COMBINATIONS | FUNCTIONAL ORGANOPHOSPHORUS OLIGOMER | COMPLEX CHAR FORMATION | SMOLDERING COMBUSTION | CHEMISTRY, MULTIDISCIPLINARY | POWER TRANSFORMERS
Journal Article
Polymer degradation and stability, ISSN 0141-3910, 2014, Volume 106, pp. 138 - 149
Journal Article
Journal of Polymers and the Environment, ISSN 1566-2543, 3/2014, Volume 22, Issue 1, pp. 88 - 98
Journal Article
RSC advances, ISSN 2046-2069, 2015, Volume 5, Issue 87, pp. 71482 - 71490
... and Jenny Alongi * In the last fi ve years, Layer by Layer (LbL) assembly has proven to be one of the most innovative solutions for conferring fl ame retardancy... 
AMMONIUM POLYPHOSPHATE | CHAR FORMATION | FLAME-RETARDANT | VACUUM PYROLYSIS | CHITOSAN | IR | CARBONS | POLYESTER | CELLULOSE | CHEMISTRY, MULTIDISCIPLINARY | ARCHITECTURES | Flame retardants | Durability | Fabrics | Washing | Coating | Chitosan | Cotton | Assembly
Journal Article
Polymer (Guilford), ISSN 0032-3861, 2013, Volume 54, Issue 19, pp. 5148 - 5153
For the first time, DNA and chitosan are employed using the Layer by Layer technique in order to build green coatings exhibiting efficient flame retardant... 
Flame retardancy | Layer by Layer | DNA | COMBUSTION | POLYMER SCIENCE | NITROGENOUS BASES | POLYELECTROLYTE MULTILAYERS | EXPONENTIAL-GROWTH | POLYESTER | PHOSPHATE | AMMONIUM POLYPHOSPHATE | PYROLYSIS | THIN-FILM | COTTON | Coatings industry | Fireproofing agents | Coatings | Construction | Horizontal | Deoxyribonucleic acid | Flame retardants | Calorimetry | Combustion | Chitosan
Journal Article
Carbohydrate polymers, ISSN 0144-8617, 2011, Volume 85, Issue 3, pp. 599 - 608
Cotton fabrics have been subjected to sol–gel processes performed in the presence of phosphorus-based compounds, in order to prepare a novel flame retardant... 
Flammability | Flame retardancy | Combustion behaviour | Sol–gel processes | Cotton fabrics | Sol-gel processes | POLYMER SCIENCE | MULTIFUNCTIONAL CARBOXYLIC-ACID | CHEMISTRY, ORGANIC | PART II | FUNCTIONAL ORGANOPHOSPHORUS OLIGOMER | COMBINATION | DEGRADATION | AGENTS | CHEMISTRY, APPLIED | Cotton textiles | Combustion | Fireproofing agents | Silica | Analysis
Journal Article
Journal of applied polymer science, ISSN 0021-8995, 2011, Volume 119, Issue 4, pp. 1961 - 1969
Polyester (PET), cotton (COT), and two relative blend textile fabrics were treated by sol–gel processes. Tetraethoxysilane (TEOS) was used as inorganic... 
flame retardance | thermogravimetric analysis (TGA) | fibers | polyesters | silicas | PHOSPHORUS | POLYMER SCIENCE | DEGRADATION | PYROLYSIS | Degradation | Sol gel process | Combustion | Fabrics | Polyester resins | Polyethylene terephthalates | Silicon dioxide | Textiles
Journal Article
Journal of analytical and applied pyrolysis, ISSN 0165-2370, 2016, Volume 119, pp. 114 - 123
•Layer by layer assembly has been applied for the first time to acrylic fibres.•Ammonium polyphosphate and a polyhedral oligomeric silsesquioxane have been... 
Pyrolysis | Flame retardancy | Acrylic fibres | Combustion | Layer by layer | Loi | CHEMISTRY, ANALYTICAL | RAMAN-SPECTROSCOPY | GRAPHENE | MODACRYLIC FIBERS | COPOLYMERS | SPECTROSCOPY | FLAME-RETARDANTS | POLYACRYLONITRILE | Textile fabrics | Textile fibers | Coatings | Fibers | Methane
Journal Article