Carbon-based Flame Retardants for Polymers: A Bottom-up Review

Guan Heng Yeoh, Ivan Miguel De Cachinho Cordeiro, Wei Wang, Cheng Wang, Anthony Chun Yin Yuen, Timothy Bo Yuan Chen, Juan Baena Vargas, Guangzhao Mao, Ulf Garbe, Hui Tong Chua

Research output: Contribution to journalReview articlepeer-review

19 Citations (Scopus)

Abstract

This state-of-the-art review is geared toward elucidating the molecular understanding of the carbon-based flame-retardant mechanisms for polymers via holistic characterization combining detailed analytical assessments and computational material science. The use of carbon-based flame retardants, which include graphite, graphene, carbon nanotubes (CNTs), carbon dots (CDs), and fullerenes, in their pure and functionalized forms are initially reviewed to evaluate their flame retardancy performance and to determine their elevation of the flammability resistance on various types of polymers. The early transition metal carbides such as MXenes, regarded as next-generation carbon-based flame retardants, are discussed with respect to their superior flame retardancy and multifunctional applications. At the core of this review is the utilization of cutting-edge molecular dynamics (MD) simulations which sets a precedence of an alternative bottom-up approach to fill the knowledge gap through insights into the thermal resisting process of the carbon-based flame retardants, such as the formation of carbonaceous char and intermediate chemical reactions offered by the unique carbon bonding arrangements and microscopic in-situ architectures. Combining MD simulations with detailed experimental assessments and characterization, a more targeted development as well as a systematic material synthesis framework can be realized for the future development of advanced flame-retardant polymers.

Original languageEnglish
Article number2403835
Number of pages54
JournalAdvanced Materials
Volume36
Issue number42
Early online date30 May 2024
DOIs
Publication statusPublished - 17 Oct 2024

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  • ARC Centre of Excellence for Carbon Science and Innovation (CE230100032)

    Dai, L. (Investigator 01), Qiao, S. (Investigator 02), Jiao, Y. (Investigator 03), Zheng, Y. (Investigator 04), Chua, H. T. (Investigator 05), Talapaneni, S. (Investigator 06), Yeoh, G. (Investigator 07), Ostrikov, K. (Investigator 08), Bedford, N. (Investigator 09), Mao, G. (Investigator 10), Liu, Y. (Investigator 11), Corrie, S. (Investigator 12), Tilley, R. (Investigator 13), Holl, M. (Investigator 14), Kamat, P. (Investigator 15), Chhowalla, M. (Investigator 16), Lu, J. (Investigator 17), Yakobson, B. (Investigator 18), Nakamura, J. (Investigator 19) & Regenauer-Lieb, K. (Investigator 20)

    ARC Australian Research Council

    1/01/231/01/30

    Project: Research

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