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Acetylacetone stimulus effect on electrorheological properties of TiO_2 aggregated nanoparticles

机译:乙酰丙酮刺激对TiO_2团聚纳米粒子流变性能的影响

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摘要

We present experimental results on electrorheological behavior under an ac electric field, and dielectric properties of colloidal suspensions composed of aggregated titanium dioxide nanoparticles dispersed in insulating PDMS silicon oil, as a function of adsorbed acetylacetone (Acac) dipolar molecules on TiO_2 surface. The results show that the elastic modulus G' of TiO_2-Acac/PDMS ER fluid decreases when the electric field frequency is increased gradually from 10 to 10~4 Hz. In the range of tested electric field frequencies, we observe that the dielectric properties are given essentially by an interfacial polarization which is maximal at low frequency. At low frequency (υ = 10 Hz), G' increases with the increasing Acac/TiO_2 surface coverage θ from 0 to 0.45, due to the high polarization of the particles caused by the increase of the charge carriers that move to the interface between TiO_2 particles and the insulating medium. For θ = 0.35, G' reaches 1.80 MPa which is 3.6 times greater than that of pure TiO_2/PDMS ER fluid. However, G' decreases by increasing θ beyond 0.45; in such cases, the mismatch on dielectric constant and conductivity between dispersed phase (TiO_2) and insulating medium (PDMS) begins to fall as θ increases because of the increase of Acac dipoles remaining free in PDMS. The performance of TiO_2-Acac/PDMS ER fluid at low frequency was validated by a reversibility test where elastic modulus G' increases dramatically and returns to its initial state as soon as several cycles of a switching electric field were applied between 0 and 1 kV/mm successively.
机译:我们提出了在交流电场下的电流变行为的实验结果,以及由分散在绝缘PDMS硅油中的聚集的二氧化钛纳米粒子组成的胶体悬浮液的介电性能,这是TiO_2表面上吸附的乙酰丙酮(Acac)双极性分子的函数。结果表明,当电场频率从10 Hz逐渐增大到10〜4 Hz时,TiO_2-Acac / PDMS ER流体的弹性模量G'减小。在测试的电场频率范围内,我们观察到介电特性基本上由界面极化决定,该极化在低频时最大。在低频(υ= 10 Hz)时,G'随着Acac / TiO_2表面覆盖度θ从0增大到0.45而增加,这是由于移动到TiO_2之间界面的电荷载流子的增加导致了颗粒的高极化颗粒和绝缘介质。当θ= 0.35时,G'达到1.80 MPa,是纯TiO_2 / PDMS ER流体的3.6倍。但是,G'通过将θ增加到超过0.45而减小;在这种情况下,分散相(TiO_2)与绝缘介质(PDMS)之间介电常数和导电率的不匹配随着θ的增加而开始下降,这是因为PDMS中剩余的Acac偶极子的增加。通过可逆性测试验证了TiO_2-Acac / PDMS ER流体在低频下的性能,其中在0到1 kV /毫米连续。

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