homepage  Research  Publications  2015
 
K. Q. Zhou, J. J. Liu, Y. Q. Shi, S. H. Jiang, D. Wang, Y. Hu and Z. Gui (2015) Acs Applied Materials & Interfaces 7 6070-6081.
Date: 2016-02-23   Author: SKLFS  ,   Source: SKLFS  ,
 
K. Q. Zhou, J. J. Liu, Y. Q. Shi, S. H. Jiang, D. Wang, Y. Hu and Z. Gui (2015) MoS2 Nano layers Grown on Carbon Nanotubes: An Advanced Reinforcement for Epoxy Composites. Journal/Acs Applied Materials &, Interfaces 7 6070-6081. [In English]
Web link: http://dx.doi.org/10.1021/acsami.5b00762
Keywords: MoS2, nanolayers, CNTs, epoxy resin, thermal properties, fire hazards, SMOKE SUPPRESSION PROPERTIES, IMPROVED THERMAL-STABILITY, FLAME-RETARDANT, FLAMMABILITY PROPERTIES, POLYMER NANOCOMPOSITES, MECHANICAL-PROPERTIES, POLYSTYRENE COMPOSITES, MOLYBDENUM-DISULFIDE, GRAPHENE NANOSHEETS, RESIN
Abstract: In the present study, carbon nanotubes (CNTs) wrapped with MoS2 nanolayers (MoS2-CNTs) were facilely synthesized to obtain advanced hybrids. The structure of the MoS2-CNT hybrids was characterized by X-ray diffraction, Raman spectroscopy, scanning electron microscopy, and transmission electron microscopy measurements. Subsequently, the MoS2-CNT hybrids were incorporated into EP for reducing fire hazards. Compared with pristine CNTs, MoS2-CNT hybrids Showed good dispersion in EP matrix and no obvious aggregation of CNTs was observed. The obtained nanocomposites exhibited significant improvements in thermal properties, flame retardancy and Mechanical, properties, compared with those of neat EP and composites with a single CNT or MoS2. With the incorporation of 2.0 wt % of MoS2-CNT hybrids, the char residues and glass transition temperature (T-g) of the EP composite was significantly increased. Also, the addition of MoS2-CNT hybrids awarded excellent fire resistance to the EP matrix) which was evidenced by the Significantly reduced peak heat release rate and total heat release. Moreover, the amount of organic volatiles from EP decomposition was obviously decreased, and the formation of toxic CO was effectively suppressed, implying the toxicity of the volatiles was reduced and smoke production was obviously suppressed. The dramatically reduced fire hazards were generally ascribed to the Synergistic effect of MoS2 and CNTs, containing good dispersion of MoS2-CNT hybrids, catalytic char function of MoS2 nanolayers, and physical barrier effects of MoS2 nanolayers and CNT network structure.
 
Print    Close
 
 
   
  
 
Relevant link
Contact us
State Key Laboratory of Fire Science, University of Science and Technology of China
Jinzhai Road 96, Hefei, Anhui, P. R. China
P. O.: 230026
   
Tel:(+86)551 63601651
Fax:(+86)551 63601669
E-mail:sklfs@ustc.edu.cn
 
 
Copyright © 1990-2011 State Key Laboratory of Fire Science, University of Science and Technology of China
Tel:(+86)551 3601651 | Fax:(+86)551 3601669 | E-mail:sklfs@ustc.edu.cn | ICP: D20380176