首页> 外文OA文献 >Synthesis of Mesoporous Silica@Co–Al Layered Double Hydroxide Spheres: Layer-by-Layer Method and Their Effects on the Flame Retardancy of Epoxy Resins
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Synthesis of Mesoporous Silica@Co–Al Layered Double Hydroxide Spheres: Layer-by-Layer Method and Their Effects on the Flame Retardancy of Epoxy Resins

机译:介孔二氧化硅@ Co-al层状双氢氧化物球的合成:逐层法及其对环氧树脂阻燃性能的影响

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摘要

Hierarchical mesoporous silica@Co–Al layered double hydroxide (m-SiO2@Co–Al LDH) spheres were prepared through a layer-by-layer assembly process, in order to integrate their excellent physical and chemical functionalities. TEM results depicted that, due to the electrostatic potential difference between m-SiO2 and Co–Al LDH, the synthetic m-SiO2@Co–Al LDH hybrids exhibited that m-SiO2 spheres were packaged by the Co–Al LDH nanosheets. Subsequently, the m-SiO2@Co–Al LDH spheres were incorporated into epoxy resin (EP) to prepare specimens for investigation of their flame-retardant performance. Cone results indicated that m-SiO2@Co–Al LDH incorporated obviously improved fire retardant of EP. A plausible mechanism of fire retardant was hypothesized based on the analyses of thermal conductivity, char residues, and pyrolysis fragments. Labyrinth effect of m-SiO2 and formation of graphitized carbon char catalyzed by Co–Al LDH play pivotal roles in the flame retardance enhancement.
机译:分层介孔二氧化硅@ Co-Al层状双氢氧化物(m-SiO2 @ Co-Al LDH)球是通过逐层组装过程制备的,以整合其优异的物理和化学功能。 TEM结果表明,由于m-SiO2和Co-Al LDH的静电势差,合成的m-SiO2 @ Co-Al LDH杂化物显示m-SiO2球被Co-Al LDH纳米片包装。随后,将m-SiO2 @ Co-Al LDH球掺入环氧树脂(EP)中以制备用于研究其阻燃性能的样品。圆锥结果表明,m-SiO2 @ Co-Al LDH的引入明显改善了EP的阻燃性。根据对导热系数,炭渣和热解碎片的分析,推测了一种合理的阻燃机理。 m-SiO2的迷宫效应和Co-Al LDH催化形成的石墨化碳焦在阻燃性提高中起着关键作用。

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