Organophosphorus-Functionalized Zirconium-Based Metal-Organic Framework Nanostructures for Improved Mechanical and Flame Retardant Polymer Nanocomposites

被引:28
|
作者
Unnikrishnan, Vishnu [1 ]
Zabihi, Omid [1 ]
Li, Quanxiang [1 ]
Ahmadi, Mojtaba [1 ]
Yadav, Ramdayal [1 ]
Kalali, Ehsan Naderi [2 ]
Tanwar, Khagesh [1 ]
Kiziltas, Alper [3 ]
Blanchard, Patrick [3 ]
Wang, De-Yi [2 ]
Naebe, Minoo [1 ]
机构
[1] Deakin Univ, Inst Frontier Mat, Carbon Nexus, Geelong, Vic 3216, Australia
[2] IMDEA Mat Inst, Madrid 28906, Spain
[3] Ford Motor Co, Res & Prod Dev, Dearborn, MI 48124 USA
基金
澳大利亚研究理事会;
关键词
metal-organic frameworks; post-synthetic modification; multifunctional composites; fire retardancy; mechanical properties; thermoset; EPOXY NANOCOMPOSITES; TENSILE PROPERTIES; NANOPARTICLES; STABILITY; UIO-66; ACID; PHOSPHINE;
D O I
10.1021/acsanm.1c02503
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Metal-organic framework (MOF) nanostructures provide unique opportunities in the fabrication of multifunctional polymer nanocomposites. However, achieving both enhanced mechanical properties and fire safety using labile metal-organic framework (MOF) reinforced epoxy composites is usually challenging, calling for post-synthetic modification (PSM) of MOFs. In this study, we have synthesized an organophosphorus functionalized zirconium-based MOF, P-UiO-66 NH2 (P-MOF). This as-synthesized modified MOF when reinforced with epoxy showcased improved mechanical and flame retardancy performance. Interestingly, the addition of 1 wt % of P-MOF in epoxy resin increases the tensile and flexural strength by 13.8 and 28.8% compared to the neat epoxy system. Similarly, in comparison with the pure epoxy nanocomposites, the tensile and flexural modulus of P-MOF reinforced nanocomposites was increased by 21.9 and 27.8%, respectively. Further, the flame retardancy properties of the P-MOF composites exhibited decreasing peak heat release rate (pHRR), smoke production rate (SPR), and carbon monoxide emission (CO) by 30, 42, and 43%, respectively, in parallel to the neat epoxy reinforced nanocomposites. This multifunctional property is primarily attributed to the enriched synergistic effects of the P-MOF with epoxy matrix, which promoted increased char layers on the epoxy surface, thus creating a carbonaceous layer to restrain the flame growth.
引用
收藏
页码:13027 / 13040
页数:14
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