Smart Materials Engineering, Faculty of Textile Science and Technology, Shinshu University, 3-15-1 Tokida, Ueda, Nagano 386-8567, Japan.
Langmuir. 2011 Jun 21;27(12):7902-8. doi: 10.1021/la2009489. Epub 2011 May 23.
The actuation performance of plasticized poly(vinyl chloride) (PVC) gel actuators in an electric field depends on their chemical composition and electrical and mechanical properties. The influence of plasticizer (dibutyl adipate) content on electromechanical behavior of PVC gels was investigated by impedance spectroscopy and space charge measurement. By plasticizing the PVC, the dielectric constant and space charge density of PVC gel were drastically increased at 1:2 w/w ratio of PVC to plasticizer. To apply the results obtained from the impedance spectroscopy and space charge measurement, electrostatic adhesive forces generated between the PVC gel and the anode were measured. The electrostatic adhesive force at the anode was also dramatically increased at the same plasticizer content. All of the results indicated a transition of electromechanical behavior of PVC gel in the electric field, which was considered to originate from the orientation of polarized plasticizer molecules and dipole rotation of PVC chains. By using the electrostatic adhesive force of PVC gel derived from the electromechanical transition, a new electroactive actuator can be developed for novel applications.
增塑聚氯乙烯(PVC)凝胶驱动器在电场中的致动性能取决于其化学成分以及电气和机械性能。通过阻抗谱和空间电荷测量研究了增塑剂(己二酸二丁酯)含量对 PVC 凝胶机电行为的影响。通过增塑 PVC,当 PVC 与增塑剂的比例为 1:2(w/w)时,PVC 凝胶的介电常数和空间电荷密度急剧增加。为了应用阻抗谱和空间电荷测量获得的结果,测量了 PVC 凝胶和阳极之间产生的静电粘附力。在相同的增塑剂含量下,阳极处的静电粘附力也大大增加。所有结果均表明 PVC 凝胶在电场中的机电行为发生了转变,这被认为源于极化增塑剂分子的取向和 PVC 链的偶极旋转。通过利用源自机电转变的 PVC 凝胶的静电粘附力,可以为新的应用开发新型电活性致动器。