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Preparation of silica encapsulated carbon black with high thermal stability

机译:具有高热稳定性的二氧化硅包裹的炭黑的制备

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摘要

A silica encapsulated carbon black has been prepared by a modified emulsion polymerization. After firing above 1000℃, the product shows high oxidation resistance up to 1200℃ and good stability in frit glaze at 950℃. The intrinsic mechanism for the high thermal stability is investigated by various techniques. SEM and TEM results show that carbon black nanoparticles are encapsulated by compact amorphous silica and an embedded structure is formed. XPS and FTIR analyses indicate that C-Si-O chemical bonds are present between carbon black and amorphous silica. The embedded structure with strong bonding can separate the carbon black from the outside, reduce the negative effects of mismatch in thermal expansion and thus improve the thermal stability of carbon black.
机译:通过改性乳液聚合制备了二氧化硅包封的炭黑。在1000℃以上烧制后,该产品在高达1200℃的温度下显示出较高的抗氧化性,并且在950℃的熔块釉中具有良好的稳定性。通过多种技术研究了高热稳定性的内在机理。 SEM和TEM结果表明,炭黑纳米颗粒被致密的无定形二氧化硅包裹,形成了嵌入式结构。 XPS和FTIR分析表明,炭黑和无定形二氧化硅之间存在C-Si-O化学键。具有强结合力的嵌入式结构可以将炭黑与外界隔离,减少热膨胀不匹配的负面影响,从而提高炭黑的热稳定性。

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