A Model Compound Study About Carbon Black and Diene Rubber Interaction: The Reactivity of C60 Fullerene with Squalene

F. Cataldo
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引用次数: 14

Abstract

Abstract The reaction between squalene and C60 fullerene was studied by electronic and FT-IR spectroscopy as well as by thermal analysis (TGA and DTA). This study was conducted to simulate in vitro, with model compounds, the interaction occuring during mixing between dienic rubber and carbon black. Squalene was used as model compound for dienic rubber and C60 fullerene as model compound for carbon black since fullerene-like sites have been recently identified on carbon black surface. The experimental results show that 2,5 molecules of C60 become chemically bound to each squalene molecule under thermo-oxidative conditions simulating part of the mixing cycle between rubber and carbon black. The implications of this result involve the explanation of the phenomenon known as “bound rubber”, which is the amount of chemisorbed polymer on filler surface after mixing, as well as the reinforcement effects observed by filling rubber with carbon black and the mechanical hysteresis of a rubber compound.
炭黑与二烯橡胶相互作用的模型化合物研究:C60富勒烯与角鲨烯的反应性
摘要采用电子光谱、红外光谱以及热分析(热重分析和差热分析)研究了角鲨烯与C60富勒烯的反应。本研究采用模型化合物,在体外模拟了二烯橡胶与炭黑混合过程中的相互作用。由于近年来在炭黑表面发现了类富勒烯位点,因此采用角鲨烯作为二烯橡胶的模型化合物,C60富勒烯作为炭黑的模型化合物。实验结果表明,在模拟橡胶与炭黑混合循环的热氧化条件下,2.5个C60分子与每个角鲨烯分子发生化学结合。这一结果的含义涉及到被称为“粘结橡胶”的现象的解释,即混合后在填料表面化学吸附聚合物的量,以及用炭黑填充橡胶所观察到的增强效应和橡胶化合物的机械滞后。
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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