Msrg (1)

Menny Shalom

Senior Academic

Synthesis of Carbon–Nitrogen–Phosphorous Materials with an Unprecedented High Amount of Phosphorous toward an Efficient Fire-Retardant Material

Wenyao Zhang, Jesús Barrio, Christel Gervais, Andraž Kocjan, Aiping Yu, Xin Wang, Menny Shalom

Phosphorus incorporation into carbon can greatly modify its chemical, electronic, and thermal stability properties. To date this has been limited to low levels of phosphorus. Now a simple, large-scale synthesis of carbon–nitrogen–phosphorus (CNP) materials is reported with tunable elemental composition, leading to excellent thermal stability to oxidation and fire-retardant properties. The synthesis consists of using monomers that are liquid at high temperatures as the reaction precursors. The molten-state stage leads to good monomer miscibility and enhanced reactivity at high temperatures and formation of CNP materials with up to 32 wt % phosphorus incorporation. The CNP composition and fire-retardant properties can be tuned by modifying the starting monomers ratio and the final calcination temperature. The CNP materials demonstrate great resistance to oxidation and excellent fire-retardant properties, with up to 90 % of the materials preserved upon heating to 800 °C in air.

Publication language English
Pages 9764-9769
Volume 57
Issue number 31
Publication status Published - 26.07.2018

Keywords

carbon-nitrogen-phosphorus materials
fire-retardant materials
molten-state reactions
tunable elemental composition

ASJC Scopus subject areas

Catalysis
General Chemistry
Access to Document
10.1002/anie.201805279
Other files and links
Link to publication in Scopus