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Synergistic effect of graphene oxide and boron-nitrogen structure on flame retardancy of natural rubber/IFR composites
Institution:1. Sino-Spanish Advanced Materials Institute, Shenyang University of Chemical Technology, Shenyang 110142, China;2. Liaoning Provincial Key Laboratory of Rubber & Elastomer, Shenyang 110142, China;3. Key Laboratory on Resources Chemicals and Material of Ministry of Education, Shenyang University Chemical Technology, Shenyang 110142, China;4. IMDEA Materials Institute, C/Eric Kandel, 2, 28906 Getafe, Madrid, Spain
Abstract:In this paper, GO-BN(graphene oxide grafted boron nitride) was synthesized from graphene oxide and boron nitride by silane coupling agent KH550. Furthermore, GO-BN and intumescent flame retardant (IFR) were added into natural rubber (NR) simultaneously to improve its flame retardancy. The structure of GO-BN was studied by Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS). The analysis showed that GO-BN was successfully synthesized. The enhanced flame retardancy performance of flame retardant natural rubber (FRNR) was evaluated by limiting oxygen index (LOI) and UL-94 tests. Moreover, the combustion action of FRNR in fire was evaluated by cone calorimetry. Notably, the results showed that the sample with a GO-BN content of 12 phr showed the best flame retardancy performance. The heat release rate (HRR) and total heat release rate (THR) were remarkably decreased by 42.8% and 19.4%, respectively. Carbon residues were analyzed by infrared spectroscopy and scanning electron microscopy, which showed that GO-BN and IFR had a synergistic catalytic effect. The formation of compact thermal stable carbon layer after combustion was the key to protect engineering materials from combustion.
Keywords:Natural rubber  Flame retardant  Graphene oxide  Boron nitride
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