Two‐step preparation of phosphorus‐containing organoclay and its effect on fire‐resistant and mechanical properties of the flame‐retardant polyethylene composite

Author:

Thi Nhung Hac12ORCID,Van Hoang Toan1,Doanh Truong Cong3,Oanh Ho Thi1ORCID,Dat Doan Tien12,Nguyen Ha Tran4ORCID,Le‐Nhat‐Thuy Giang12ORCID,Tran Quang Vinh2ORCID,Hoang Mai Ha12ORCID,Van Nguyen Tuyen12ORCID

Affiliation:

1. Institute of Chemistry, Vietnam Academy of Science and Technology Hanoi Vietnam

2. Graduate University of Science and Technology Vietnam Academy of Science and Technology Hanoi Vietnam

3. Hanoi University of Industry Hanoi Vietnam

4. National Key Laboratory of Polymer and Composite Materials Ho Chi Minh City University of Technology, Vietnam National University Ho Chi Minh City Vietnam

Abstract

AbstractIn this study, a nanohybrid based on montmorillonite (oMMT2) was prepared through a two‐step method using Arquad MCB‐80 and 9,10‐dihydro‐9‐oxa‐10‐phosphaphenanthrene‐10‐oxide (DOPO) as intercalation agents. The nanohybrid exhibited a basal spacing of 31.5 Å, which contained approximately 12.3% of Arquad MCB‐80 and 31.6% of DOPO. Various amount of oMMT2 nanohybrid was incorporated into a flame‐retardant polyethylene system containing aluminum trihydroxide and red phosphorus with a constant total additive content of 20 wt%. The dispersibility of oMMT2 in the composite matrix was evaluated by energy dispersive x‐ray mapping and x‐ray diffraction analyses. At a content of 3 wt% in the nanocomposite, oMMT2 showed a highly exfoliated state, while at a 5% content, a partially exfoliated and intercalated state was observed. A synergistic flame‐retardant effect between the nanohybrid and the mixture of aluminum trihydroxide and red phosphorus was found. The nanocomposite loading 3 wt% oMMT2 demonstrated the best flame retardancy, achieving a V‐0 rating of the vertical burning test with a limiting oxygen index of 27.6%. Moreover, the addition of the low oMMT2 contents (≤3 wt%) improved the mechanical properties of the flame‐retardant composite.

Funder

Vietnam Academy of Science and Technology

Publisher

Wiley

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