Laboratory of Functional and Biological Nanomaterials, College of Materials Science and Engineering, Qingdao University of Science and Technology , Qingdao, Shandong 266061, China.
ACS Appl Mater Interfaces. 2015 Dec 9;7(48):26624-32. doi: 10.1021/acsami.5b08155. Epub 2015 Nov 24.
Titanium dioxide and Nb-doped titanium dioxide microspheres with the same size were fabricated by a simple sol-gel method, and the formation mechanism of Nb-doped titanium dioxide microspheres was proposed. Titanium dioxide and Nb-doped titanium dioxide microspheres were adopted as dispersed materials for electrorheological (ER) fluids to investigate the influence of the charge increase introduced by Nb doping on the ER activity. The results showed that Nb doping could effectively enhance the ER performance. Combining with the analysis of dielectric spectroscopy, it was found that the interface polarization of Nb-doped TiO2 ER fluid was larger than that of TiO2 ER fluid, which might be caused by more surface charges in Nb-TiO2 microspheres due to Nb(5+) doping and resulting in enhancement of electric field force and strengthening of fibrous structure. In addition, by comparing and analyzing the permittivity curves of Nb-TiO2/LDPE solid composite and Nb-TiO2/silicone-oil fluid composite, it could be concluded that the enhancement of permittivity at low frequency resulted from the increase of the order degree of dispersed particles in ER fluid rather than from the quasi-dc (QDC) behavior. Moreover, the absolute value of slope of permittivity curves (K) at 0.01 Hz could be utilized as the standard for judging the ability to maintain the chainlike structure. The relationships between polarizability of dispersed particles, dielectric spectrum, parameter K, and ER properties were discussed in detail.
采用简单的溶胶-凝胶法制备了粒径相同的二氧化钛和铌掺杂二氧化钛微球,并提出了铌掺杂二氧化钛微球的形成机理。将二氧化钛和铌掺杂二氧化钛微球作为电流变(ER)流体的分散材料,研究了 Nb 掺杂引入的电荷增加对 ER 活性的影响。结果表明,Nb 掺杂能有效提高 ER 性能。结合介电谱分析,发现 Nb 掺杂 TiO2 ER 流体的界面极化大于 TiO2 ER 流体,这可能是由于 Nb(5+)掺杂导致 Nb-TiO2 微球表面电荷增加,从而增强了电场力,增强了纤维结构。此外,通过比较和分析 Nb-TiO2/LDPE 固体复合材料和 Nb-TiO2/硅油流体复合材料的介电常数曲线,可以得出结论,ER 流体中分散颗粒有序度的增加导致低频介电常数的增强,而不是准直流(QDC)行为。此外,介电常数曲线在 0.01 Hz 时的斜率绝对值(K)可作为判断保持链状结构能力的标准。详细讨论了分散颗粒的极化率、介电谱、参数 K 和 ER 性能之间的关系。