Effect of Silica Surface on Thermal Decomposition of the Immobilized Peroxide Oligomers

M. Tokareva, S. Tokarev, V. Vostres, S. TokarevViktor
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引用次数: 1

Abstract

The thermal decomposition of pendant peroxy groups in a cooligomer of maleic anhydride with 5-(tertbutylperoxy)-5-methylhex-1-en-3-yne as well as in its amino derivatives immobilized on different silica surfaces, has been investigated using a complex thermogravimetric analysis. Two types of silica: fumed (aerosil) and precipitated (white carbon black) ones have been surface modified by this cooligomer via diverse techniques. It has been established that in all the cases the cooligomer decomposition on the silica surface complies with the first-order kinetics. Estimated activation energy evidences lowering thermal stability of the immobilized peroxide cooligomer in comparison with its decomposition in a solution. Interestingly, on the surface of fumed silica the decomposition of peroxide cooligomers always occurs as a one-stage process, while on the surface of precipitated silica it can occur as a two-stage process. The reason for this phenomenon is a difference in the porosity and surface chemistry of these two silica samples.
二氧化硅表面对固定化过氧化物低聚物热分解的影响
用复杂的热重分析方法研究了5-(叔丁基过氧基)-5-甲基己基-1-烯-3-炔与马来酸酐的冷聚物及其固定在不同二氧化硅表面的氨基衍生物中悬垂过氧基的热分解。两种类型的二氧化硅:气相(气相硅)和沉淀(白炭黑)的二氧化硅已经通过不同的技术被这种冷却聚合物表面改性。在所有情况下,冷却体在二氧化硅表面的分解都符合一级动力学。估计的活化能表明,与溶液中的分解相比,固定化过氧化物冷却物的热稳定性降低。有趣的是,在气相二氧化硅表面,过氧化物冷却体的分解总是作为一个阶段的过程发生,而在沉淀二氧化硅表面,它可以作为一个两阶段的过程发生。造成这种现象的原因是这两种二氧化硅样品的孔隙率和表面化学性质不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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