G'/> Ultrathin Beta-Nickel hydroxide nanosheets grown along multi-walled carbon nanotubes: A novel nanohybrid for enhancing flame retardancy and smoke toxicity suppression of unsaturated polyester resin
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Ultrathin Beta-Nickel hydroxide nanosheets grown along multi-walled carbon nanotubes: A novel nanohybrid for enhancing flame retardancy and smoke toxicity suppression of unsaturated polyester resin

机译:沿多壁碳纳米管生长的超薄β-氢氧化镍纳米型:一种新型纳米冬冬冬冬胺,用于增强不饱和聚酯树脂的阻燃性和烟雾毒性抑制

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Graphical abstractDisplay OmittedAbstractNovel nanohybrid (β-Ni(OH)2-CNTs) obtained by ultrathin Beta-Nickel hydroxide (β-Ni(OH)2) nanosheets grown along multi-walled carbon nanotubes (CNTs) was successfully synthesized and then incorporated into UPR to prepare UPR/β-Ni(OH)2-CNTs nanocomposites. Structure of β-Ni(OH)2-CNTs nanohybrid was confirmed by X-ray diffraction, scanning electron microscopy measurements. Compared with single CNTs or β-Ni(OH)2, the dispersion of β-Ni(OH)2-CNTs in UPR was improved greatly. And the UPR/β-Ni(OH)2-CNTs nanocomposites exhibited significant improvements in flame retardancy, smoke suppression, and mechanical properties, including decreased peak heat release rate by 39.79%, decreased total heat release by 44.87%, decreased smoke release rate by 29.86%, and increased tensile strength by 12.1%. Moreover, the amount of toxic volatile from UPR nanocomposites decomposition was dramatically reduced, and smoke generation was effectively inhibited during combustion. The dramatical reduction of fire hazards can be ascribed to the good dispersion, the catalytic charring effect of β-Ni(OH)2nanosheets and physical barrier effe
机译:<![cdata [ 图形摘要 显示省略 抽象 新型纳米嗜含量(β-Ni(OH) 2 -CNTs)通过超薄β-氢氧化物获得(β-Ni(OH) 2 )沿多壁碳纳米管(CNT)生长的纳米片被成功地合成,然后掺入UPR中以制备UPR /β- ni(oh) 2 -cntn纳米复合材料。 β-Ni(OH)的结构 2 通过X射线衍射确认纳米冬次,扫描电子显微镜测量。与单CNT或β-Ni(OH)相比(OH) 2 ,β-NI(OH)的色散(OH) 2 < / ce:upr在upr中得到大大提高。和UPR /β-Ni(OH) 2 -CNT纳米复合材料表现出显着的阻燃性,烟雾抑制和机械性能,包括降低峰值热释放率39.79%,总热量减少44.87%,烟雾释放率降低29.86%,抗拉强度增加12.1%。此外,从UPR纳米复合材料分解的毒性挥发量显着降低,并且在燃烧过程中有效地抑制了烟雾产生。火灾危害的急剧减少可以归因于良好的分散体,β-Ni(OH) 2 纳米液和物理屏障效果的催化炭状效应

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