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Silicone-grafted carbonaceous nanotubes with enhanced dispersion stability and electrorheological efficiency

机译:有机硅接枝的碳纳米管,具有增强的分散稳定性和电流变效率

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摘要

Carbonaceous particles are types of important fillers or dispersed phases of electro-responsive electrorheological (ER) suspensions. But carbonaceous particles, in particular with nano-order size, are easy to aggregate in oils. This characteristic limits the application of ER suspensions based on carbonaceous particles. In order to improve dispersion stability and ER efficiency, in this paper, we develop silicone-grafted carbonaceous nanotubes (CTs) by grafting oxidized carbonaceous nanotubes with epoxy-terminated silicone. The samples are characterized by Fourier transform infrared spectra, x-ray photoelectron spectroscopy, thermogravimetric analysis, and transmission electron microscopy. The wettability and dispersion stability of nanotubes in silicone oil are investigated by wetting curves and sedimentation tests. The ER properties of CTs when dispersed in silicone oil are measured by a rheometer under electric fields. It demonstrates that grafting with silicone can distinctly improve the wettability of CTs in silicone oil and decrease the re-aggregation of CTs. As a result, the suspension of silicone-grafted CTs in silicone oil shows high dispersion stability. Compared to the suspension of bare CTs, the suspension of silicone-grafted CTs exhibits lower zero-field viscosity but higher field-induced viscosity; thus it possesses higher ER efficiency. This enhanced ER efficiency is related to the improved wettability of silicone-grafted CTs in silicone oil.
机译:碳质颗粒是电响应电流变(ER)悬浮液的重要填料或分散相的类型。但是碳质颗粒,特别是具有纳米级尺寸的颗粒,很容易在油中聚集。该特性限制了基于碳质颗粒的ER悬浮液的应用。为了提高分散稳定性和ER效率,在本文中,我们通过将氧化的碳纳米管与环氧封端的硅氧烷接枝来开发有机硅接枝的碳纳米管(CT)。样品通过傅里叶变换红外光谱,X射线光电子能谱,热重分析和透射电子显微镜进行表征。通过润湿曲线和沉降试验研究了纳米管在硅油中的润湿性和分散稳定性。当分散在硅油中时,CT的ER特性通过流变仪在电场下测量。这表明用硅树脂接枝可以显着改善CTs在硅油中的润湿性,并减少CTs的重新聚集。结果,硅氧烷接枝的CT在硅油中的悬浮液显示出高分散稳定性。与裸露的CT悬浮液相比,硅酮接枝的CT悬浮液显示出较低的零场粘度,但具有较高的场致粘度;因此具有较高的ER效率。这种增强的ER效率与硅油中硅接枝的CT的改进的润湿性有关。

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