International audienceThe output of bio-based polyvinyl alcohol (PVA) has been growing rapidly with a substantial increase of developments both in academic and industrial research areas in the past decade, which is due to its water solubility, plasticity, and degradability. However, PVA is highly flammable with a limiting oxygen index of only 19% owning to its inherent macromolecular structure composed of carbon, hydrogen, and oxygen atoms. The demand for flame retardancy of PVA has been increased rapidly and is generally satisfied by introducing flame retardants via chemical grafting, physical blending, and coating. This review summarizes the flame retardants applied in PVA and their influence on the flammability and mechanical properties ...
Due to environmental concerns, some of the conventional halogenated flame retardants have been banne...
The objective of this work was to manufacture biodegradable films based on polyvinyl alcohol (PVA) a...
The first chapter examines the non-halogenated flame retardant additives. The synthesis and blending...
PLA has become a commodity polymer with wide applications in a number of fields. However, its high f...
Polyvinyl alcohol- (PVA-) based aerogels have attracted widespread attention owing to their low cost...
International audienceSustainable polymers are emerging fast and have received much more attention i...
It would be difficult to imagine how modern life across the globe would operate in the absence of sy...
A key part of the development of new polymeric materials focuses on the use of flame-retardant addit...
The development of science and technology provides the availability of sophisticated products but co...
Poly(lactic acid) (PLA) synthesized from renewable resources has drawn a great deal of interest in p...
ABSTRACT: Poly(vinyl alcohol) was solvent-cast from aqueous solution of n-hexane into 125 µm films. ...
Polyvinyl alcohol (PVA) is a nontoxic and thermoplastic polymer which is completely biodegradable. P...
Due to thermal and flame/fire sensitivity of biopolymers especially in plant-based biopolymer filler...
Poly(vinylphosphonic acid) (PVPA) and polyethylenepolyamine (PEPA) are used as novel intumescent fla...
In der vorliegenden Dissertationsarbeit wird auf die Thematik der Entwicklung von Polymerwerkstoffen...
Due to environmental concerns, some of the conventional halogenated flame retardants have been banne...
The objective of this work was to manufacture biodegradable films based on polyvinyl alcohol (PVA) a...
The first chapter examines the non-halogenated flame retardant additives. The synthesis and blending...
PLA has become a commodity polymer with wide applications in a number of fields. However, its high f...
Polyvinyl alcohol- (PVA-) based aerogels have attracted widespread attention owing to their low cost...
International audienceSustainable polymers are emerging fast and have received much more attention i...
It would be difficult to imagine how modern life across the globe would operate in the absence of sy...
A key part of the development of new polymeric materials focuses on the use of flame-retardant addit...
The development of science and technology provides the availability of sophisticated products but co...
Poly(lactic acid) (PLA) synthesized from renewable resources has drawn a great deal of interest in p...
ABSTRACT: Poly(vinyl alcohol) was solvent-cast from aqueous solution of n-hexane into 125 µm films. ...
Polyvinyl alcohol (PVA) is a nontoxic and thermoplastic polymer which is completely biodegradable. P...
Due to thermal and flame/fire sensitivity of biopolymers especially in plant-based biopolymer filler...
Poly(vinylphosphonic acid) (PVPA) and polyethylenepolyamine (PEPA) are used as novel intumescent fla...
In der vorliegenden Dissertationsarbeit wird auf die Thematik der Entwicklung von Polymerwerkstoffen...
Due to environmental concerns, some of the conventional halogenated flame retardants have been banne...
The objective of this work was to manufacture biodegradable films based on polyvinyl alcohol (PVA) a...
The first chapter examines the non-halogenated flame retardant additives. The synthesis and blending...