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Electrostatic-Interaction-Driven Assembly of Binary Hybrids towards Fire-Safe Epoxy Resin Nanocomposites

机译:静电相互作用驱动的二元杂种朝向防火环氧树脂纳米复合材料的组装

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摘要

Manganese dioxide (MnO2), as a promising green material, has recently attracted considerable attention of researchers from various fields. In this work, a facile method was introduced to prepare binary hybrids by fabricating three-dimensional (3D) zinc hydroxystannate (ZHS) cubes on two-dimensional (2D) MnO2 nanosheets towards excellent flame retardancy and toxic effluent elimination of epoxy (EP) resin. Microstructural analysis confirmed that the morphologies and structures of MnO2@ZHS binary hybrids were well characterized, implying the successful synthesis. Additionally, the morphological characterization indicated that MnO2@ZHS binary hybrids could achieve satisfactory interfacial interaction with the EP matrix and be well dispersed in nanocomposites. Cone calorimeter test suggested that MnO2@ZHS binary hybrids effectively suppressed the peak of heat release rate and total heat release of EP nanocomposites, performing better than MnO2 or ZHS alone. Condensed-phase analysis revealed that MnO2@ZHS binary hybrids could promote the char density and graphitization degree of char residues and thereby successfully retard the permeation of oxygen and flammable gases. Moreover, through the analysis of gas phase, it can be concluded that MnO2@ZHS binary hybrids could efficiently suppress the production of toxic gases during the degradation of EP nanocomposites. This work implies that the construction of 2D/3D binary hybrids with an interfacial interaction is an effective way to fabricate high-performance flame retardants for EP.
机译:作为有前途的绿色材料,二氧化碳(MNO2)最近引起了各种领域的研究人员的大幅关注。在这项工作中,通过在二维(2D)MnO2纳米片上制造三维(3D)羟基烷基(Zhs)立方体朝着优异的阻燃性和毒性流出物消除环氧树脂(EP)树脂,以制备二元杂交种来制备二元杂种。微观结构分析证实,MNO2 @ ZHS二元杂种的形态和结构表现得很好,暗示了成功的合成。另外,形态表征表明MNO2 @ ZHS二元杂种可以实现与EP矩阵的令人满意的界面相互作用,并且良好地分散在纳米复合材料中。锥形量热计测试表明,MNO2 @ Zhs二进制杂种有效地抑制了EP纳米复合材料的热释放速率和总热释放的峰值,仅仅比MnO 2或Zhs更好。冷凝相分析显示,MNO2 @ Zhs二进制杂种可以促进Char残留物的Char密度和石墨化程度,从而成功延迟氧气和易燃气体的渗透。此外,通过对气相分析,可以得出结论,MnO2 @ Zhs二元杂种可以有效地抑制EP纳米复合材料的降解过程中有毒气体的产生。该工作意味着具有界面相互作用的2D / 3D二元杂种的构建是制造高性能阻燃剂的有效方法。

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