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Interface nanoengineering of a core-shell structured biobased fire retardant for fire-retarding polylactide with enhanced toughness and UV protection.

Authors :
Yu, Yueming
Zhang, Yan
Xi, Liangdong
Zhao, Zhinuo
Huo, Siqi
Huang, Guobo
Fang, Zhengping
Song, Pingan
Source :
Journal of Cleaner Production. Feb2022, Vol. 336, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

In this work, we found a very effective method to adjust the polarity of the fillers to promote its good dispersion in matrix by using an organic-solvent-free assembling strategy. With the coating of polyethylenimine-decorated graphene oxide (GO-PEI), the as-prepared biobased core-shell graphene oxide hybrid (BCSGOH) can distribute more homogeneously in the polylactide (PLA) matrix, compared with the bio-derived core-shell flame retardant (CSFR) with higher polarity. The polarity analysis of BCSGOH, CSFR and PLA indicated that the polarity of BCSGOH had a better match with that of PLA, and the interfacial tension (0.8 mN/m) between BCSGOH and PLA was much lower than that (12.0 mN/m) between CSFR and PLA. Consequently, the better flame retardancy, impact toughness and UV-shielding properties of PLA/BCSGOH composites were achieved. 6 wt% of BCSGOH endowed PLA with the best comprehensive properties, such as the UL94 V-0 rating, the limiting oxygen index (LOI) of 30.0%, and notched impact strength of 12.38 kJ/m2. Hence, this work offers a conducive, facile and green strategy to create high-performance fire-safe bioplastics. [Display omitted] • A surface-nanoengineered biobased core-shell structured fire retardant, BCSGOH, is prepared. • BCSGOH is uniformly dispersed in the PLA matrix because of a low interfacial tension. • 6 wt% BCSGOH enables PLA to achieve a desirable UL-94 V-0 rating. • The addition of BCSGOH leads to a 59% increase in the impact toughness of PLA. • The resultant fire-retardant PLA exhibits an improved UV-resistance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09596526
Volume :
336
Database :
Academic Search Index
Journal :
Journal of Cleaner Production
Publication Type :
Academic Journal
Accession number :
154974182
Full Text :
https://doi.org/10.1016/j.jclepro.2022.130372