H2020Individual fellowship2016–2018

NOFLAME · Flame retardant Nanocontainers

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2016-03-01 → 2018-02-28
EU contribution
€159,461
Participants
1
Scheme
MSCA-IF-EF-ST

Lines connect the coordinator with its partners.

Results in brief

Flame retardant Nanocontainers

NOFLAME has proposed a unique and competitive program for the development of polymeric flame retardant nanocontainers. The nanocontainers have been synthesized in our laboratory during this fellowship with the goal to open an alternative to help solve the problems of poor dispersion and low interfacial adhesion of the inorganic and hybrid nanomaterials applied for flame retardant applications so far. Furthermore, the ability to encapsulate a wide range of substances makes the nanocontainers highly attractive to develop multifunctional nanomaterials in future applications. Since we live in the polymer age, and polymers are highly flammable, flame retardants have become a key component in the industry to reduce the impact of fires. Flame retardants save people's lives, their property and in some cases even the environment. However, traditional flame retardants like halogenated compounds present some serious disadvantages, like environmental persistence and toxicity, and their use is currently limited by REACH (EC 1907/2006). Halogen-free flame retardants like organophosphorus compounds or metal hydroxides, on the other hand, deteriorate the mechanical properties and have poor effectiveness. Thus, over the last years, the development of fire-resistant nanomaterials encloses one of the most promising challenges in the area of flame retardancy, considering that they can simultaneously enhance mechanical and thermal properties. From a scientific perspective, the main activities within NOFLAME were: 1) the synthesis of nanocontainers and the encapsulation of organic and inorganic flame retardant compounds, 2) the introduction of the nanocontainers in a polymer matrix and 3) the evaluation of their influence on the mechanical and flame retardant properties of the final material. This project was only possible combining the expertise of the host MPIP Institute (Max Planck Institute for Polymer Research) and the partner BAM Institute (Bundesanstalt für Materialforschung und –prüfung).

Data: CORDIS, © European Union

Project objective

Since we live in the polymer age, and polymers are highly inflammable, flame retardants have become a key component in industry to reduce the impact of fires. Flame retardants save people's lives, their property and in some cases even the environment. However, traditional flame retardants like halogenated compounds present some serious disadvantages, like environmental persistence and toxicity, and their use is currently limited by REACH (EC 1907/2006). Halogen-free flame retardants like organophosphorus compounds or metal hydroxides, on the other hand, deteriorate the mechanical properties and have poor effectiveness. In this area, nanotechnology provides us some badly needed new approaches. In NOFLAME, we will explore a new approach based on the development of polymer flame retardant nanocontainers with high thermal stability, low flammability and good compatibility with polymeric matrices. These nanocontainers will help solve the problems of poor dispersion and low interfacial adhesion of the inorganic and hybrid nanomaterials applied so far. Furthermore, the ability to encapsulate a wide range of substances makes them highly attractive to develop multifunctional nanomaterials. The main activities within NOFLAME are: 1) the synthesis of several nanocontainers and the encapsulation of organic and inorganic flame retardant compounds, 2) the introduction of the nanocontainers in the polymer matrix and 3) the evaluation of their influence on the mechanical and flame retardant properties of the final material. Combining their expertise for NOFLAME, the fellow Dr. Maria Velencoso, the host MPIP and the partner BAM will execute a thrilling research project to produce novel flame retardant nanomaterials and meet an urgent need of the European plastics industry.

Original text from CORDIS.

Participants

  • MAX-PLANCK-GESELLSCHAFT ZUR FORDERUNG DER WISSENSCHAFTEN EV · MUNCHENCoordinatorGermany

Links

Data: CORDIS, © European Union