Zheng Chen, Dong Yuezhen, Liu Yang, Zhao Xiaopeng, Yin Jianbo
Smart Materials Laboratory, Department of Applied Physics, Northwestern Polytechnical University, Xi'an 710129, China.
Polymers (Basel). 2017 Aug 23;9(9):385. doi: 10.3390/polym9090385.
We used inherently conducting polyaniline as a core to develop a type of poly(ionic liquid)s-capsulated polyaniline composite particles in order to both overcome the surface charged character of pure poly(ionic liquid)s particles prepared by post ion-exchange procedure, and enhance electrorheological (ER) effect. The structure was characterized by different techniques and the electrorheological suspension was prepared by dispersing the composite particles in silicone oil. Under electric fields, the electrorheological properties of the suspensions of poly(ionic liquid)s-capsulated polyaniline composite particles were measured and compared with their single forms. It is demonstrated that the composite particles have distinctly enhanced electrorheological effect compared with the pure poly(ionic liquid)s and polyaniline particles under electric stimuli. At 4 kV/mm of electric field, the yield stress of the suspension of poly(ionic liquid)s-capsulated polyaniline composite particles in silicone oil is about 2.3 kPa, which is twice as high as 1.2 kPa stress of the suspension of poly(ionic liquid) particles and 2.5 times as high as 0.9 kPa stress of the suspension of polyaniline particles. By using dielectric spectroscopy, microscopic observation, and oscillation rheology, we studied the origin of this enhanced electrorheological effect. The results indicated that wrapping polyaniline into poly(ionic liquid)s could partly suppress the positively charged surface state of poly(ionic liquid)s particles prepared by post ion-exchange procedure and improve the column-like electrorheological structure. This suppression should be responsible for the enhanced electrorheological effect of poly(ionic liquid)s-capsulated polyaniline composite particles.
我们以本征导电聚苯胺为核心,制备了一种聚(离子液体)包覆的聚苯胺复合粒子,以克服通过后离子交换法制备的纯聚(离子液体)粒子的表面带电特性,并增强电流变(ER)效应。通过不同技术对其结构进行了表征,并将复合粒子分散在硅油中制备了电流变悬浮液。在电场作用下,测量了聚(离子液体)包覆的聚苯胺复合粒子悬浮液的电流变性能,并与它们的单一形式进行了比较。结果表明,在电刺激下,复合粒子的电流变效应比纯聚(离子液体)和聚苯胺粒子有明显增强。在4 kV/mm的电场下,聚(离子液体)包覆的聚苯胺复合粒子在硅油中的悬浮液的屈服应力约为2.3 kPa,是聚(离子液体)粒子悬浮液1.2 kPa应力的两倍,是聚苯胺粒子悬浮液0.9 kPa应力的2.5倍。通过介电谱、微观观察和振荡流变学,我们研究了这种增强的电流变效应的起源。结果表明,将聚苯胺包裹在聚(离子液体)中可以部分抑制通过后离子交换法制备的聚(离子液体)粒子的带正电表面状态,并改善柱状电流变结构。这种抑制作用应该是聚(离子液体)包覆的聚苯胺复合粒子电流变效应增强的原因。