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在电场中通过激光扫描共聚焦显微镜直接观察 PVC 凝胶的微观结构和相迁移。

Direct observation by laser scanning confocal microscopy of microstructure and phase migration of PVC gels in an applied electric field.

机构信息

Smart Materials Engineering, Faculty of Textile and Technology, Shinshu University, 3-15-1 Tokida, Ueda, Nagano 386-8567, Japan.

出版信息

Langmuir. 2011 Feb 1;27(3):1207-11. doi: 10.1021/la104031b. Epub 2010 Dec 21.

Abstract

The fluorescent probe lucigenin was incorporated in poly(vinyl chloride) (PVC) gels, and laser scanning confocal microscopy (LSCM) was used to clarify the internal structures of the gels. From the two-dimensional and three-dimensional information by LSCM, we first observed the internal structure of the PVC gel at a wet status, where the PVC gels comprised a polymer-rich phase and a polymer-poor phase uniformly with a three-dimensional network structure. After an electric field was applied, an effect of the electric field resulted in the change of internal structure in the gels. The polymer-poor phase moved from the cathode to the anode and the polymer-rich phase formed linelike arrangement between electrodes due to the attraction force. On the other hand, the freeze-dried PVC gels with/without in-situ dc voltage casting were particularly fabricated to confirm above results by the field emission scanning electron microscopy (FE-SEM). It was found that many craters remained on the surface of the gel near the anode due to sublimation in freeze-drying. This phenomenon did not appear on the surface near the cathode. The results of in-situ dc voltage casting also suggested that a substantial amount of polymer-poor phase was moved and fixed at the anode. Thus, results of both LSCM and in-situ dc voltage casting corresponded to the effect of electric field on PVC gels and provided a convincing evidence for the interpretation of the deformation mechanism of PVC gel actuators by an applied electric field.

摘要

荧光探针鲁米诺被掺入聚氯乙烯(PVC)凝胶中,并使用激光扫描共聚焦显微镜(LSCM)来阐明凝胶的内部结构。通过 LSCM 的二维和三维信息,我们首先观察到湿状态下 PVC 凝胶的内部结构,其中 PVC 凝胶均匀地包含聚合物富相和聚合物贫相,并具有三维网络结构。施加电场后,电场的作用导致凝胶内部结构发生变化。聚合物贫相从阴极向阳极移动,聚合物富相由于吸引力在电极之间形成线状排列。另一方面,特别制备了带有/不带原位直流电压铸造的冻干 PVC 凝胶,通过场发射扫描电子显微镜(FE-SEM)来确认上述结果。发现由于冻干过程中的升华,在阳极附近的凝胶表面上留下了许多凹坑。在阴极附近的表面上则没有出现这种现象。原位直流电压铸造的结果还表明,大量的聚合物贫相被移动并固定在阳极上。因此,LSCM 和原位直流电压铸造的结果都对应于电场对 PVC 凝胶的影响,并为应用电场对 PVC 凝胶致动器的变形机制的解释提供了令人信服的证据。

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