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Oleophilicity and the strong electrorheological effect of surface-modified titanium oxide nano-particles

机译:表面改性的氧化钛纳米颗粒的亲油性和强电流变效应

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Surface-modified titanium oxide nano-particles with sodium dodecyl sulfate (SDS) were prepared by means of hydrolyzation. The size distribution shows that the average size of the modified particles is about 120 nm. The energy dispersive spectrometry and spectrometry photo-electron spectra indicate that the SDS does exist on the surface of particles. It is demonstrated that the slope of the wettability curve of modified particles of about 120 nm in size is almost five times larger than that of unmodified particles. Rheological measurement shows that the yield stress of the electrorheological (ER) fluid with the modified particles can reach about 130 kPa under 4 kV mm(-1) DC electric field when the volume fraction is 56 vol%; this is greatly enhanced in comparison with that of an unmodified TiO2 ER fluid. It is further considered that the enhancements in wettability, proper dielectric constant and dielectric loss due to the SDS modification make an important contribution to the strong ER effect. Furthermore, this modified TiO2 ER fluid also shows excellent suspended stability compared with the unmodified TiO2 ER fluid.
机译:通过水解制备具有十二烷基硫酸钠(SDS)的表面改性的氧化钛纳米粒子。尺寸分布表明,改性颗粒的平均尺寸为约120nm。能量色散能谱和光电子能谱表明SDS确实存在于颗粒表面。已经证明,尺寸约为120nm的改性颗粒的润湿性曲线的斜率几乎是未改性颗粒的润湿性曲线的五倍。流变测量表明,当体积分数为56 vol%时,在4 kV mm(-1)直流电场下,带有改性颗粒的电流变(ER)流体的屈服应力可以达到约130 kPa。与未改性的TiO2 ER流体相比,这大大增强了。进一步认为,由于SDS改性而导致的润湿性,适当的介电常数和介电损耗的提高,对强ER效应起了重要作用。此外,与未改性的TiO2 ER流体相比,这种改性的TiO2 ER流体也显示出优异的悬浮稳定性。

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