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Journal Article

Citation

Zhang W, Wu W, Meng W, Xie W, Cui Y, Xu J, Qu H. Polymers (Basel) 2020; 12(1): e212.

Affiliation

College of Chemistry and Environmental Science, Hebei University, The Flame Retardant Materials and Processing Technology Engineering Technology Research Center, Baoding 071002, China.

Copyright

(Copyright © 2020, MDPI: Multidisciplinary Digital Publications Institute)

DOI

10.3390/polym12010212

PMID

31952229

Abstract

Novel core-shell graphitic carbon nitride/zinc phytate (g-C3N4/PAZn) flame retardant was simple synthetized using two-dimensional g-C3N4 and bio-based PAZn by self-assembly and incorporated into epoxy resin (EP) for improving the fire safety. The flame retardance and smoke suppression were investigated by cone calorimetry. The results indicated that g-C3N4/PAZn-EP displayed outstanding flame retardancy and smoke suppression, for example, the peak heat release rate and peak smoke production rate decreased by 71.38% and 25%, respectively. Furthermore, the flame retardancy mechanism was further explored by char residue and thermal stability analysis. It can be predicted that g-C3N4/PAZn will provide valuable reference about bio-based flame retardant.


Language: en

Keywords

epoxy resin; flame retardancy; graphitic carbon nitride; zinc phytate

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