Cyclodextrins and Cyclodextrin Derivatives as Green Char Promoters in Flame Retardants Formulations for Polymeric Materials. A Review
Articolo
Data di Pubblicazione:
2019
Abstract:
Polymers are intrinsically flammable materials; hence, fire retardance (FR) is required in
their most common applications (i.e., electronic and construction, to mention some). Recently, it has
been reported that cyclodextrin (CD) and cyclodextrin derivatives are beginning to be introduced into
Intumescent Fire Retardant (IFR) formulations in place of pentaerythritol, which is used in IFRs that
are currently on the market. Since IFRs are of less environmental concern than their hazardous halogen
containing counterparts, the use of natural origin compounds in IFRs provides a way to comply
with green chemistry issues. BCD and BCD derivatives presence in IFR mixtures promotes a higher
yield of blowing gases and char when polymeric materials undergo combustion. Both processes
play important roles in intumescence. The key rule to obtain in insulating compact char is the good
dispersion of the nanoparticles in the matrix, which can be achieved by functionalizing nanoparticles
with BCD derivatives. Moreover, CD derivatives are attractive because of their nanosized structure
and their ability to form inclusion complexes with many compounds used as FR components,
reducing their release to the environment during their shelf life of FR items. Often, fire retardance
performed by BCD and BCD derivatives accompanies other relevant properties, such as improved
mechanical resistance, washability resistance, self healing ability, thermal conductivity, etc. The
application of CD fire retardant additives in many polymers, such as poly(lactic acid), poly(propylene),
poly(vinyl acetate), poly(methyl methacrylate), linear low density poly(ethylene), polyamides, and
polyesters are comprehensively reviewed here.
Tipologia CRIS:
03B-Review in Rivista / Rassegna della Lett. in Riv. / Nota Critica
Keywords:
cyclodextrin, nanosponge, phosphorous fire retardant, char, inclusion complex
Elenco autori:
Maria Paola Luda, Marco Zanetti
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