Poly(Vinyl Alcohol)/Poly(Acrylic Acid) Hydrogel in a dc Electric Field: Swelling, Shape Change, and Actuation Characteristics.

Morshed Khandaker
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引用次数: 2

Abstract

Poly(vinyl alcohol) (PVA)/Poly(acrylic acid) (PAA) hydrogel can be utilized as a biomimetic actuator and coating material for tissue-implant interface, when employing an electrical stimulus. The swelling, shape change, and actuation characteristics of PVA/PAA hydrogel in a range of dc electrical fields were determined to find the optimal electric field for the hydrogel application as biomimetic actuator and coating materials. The hydrogel samples were prepared by dissolving PVA and PAA in deionized water at 4 wt% and mixed together at 1:1 ratio. Two custom made experimental setups were fabricated; one used for the measurement of swelling ratio of the hydrogels; and the other used for the shape changes or actuation characteristics of the hydrogels. Swelling experiments show increased swelling ratios of the hydrogel due to 10 V, 20 V, and 30 V electric fields. The rate of increment of the swelling ratio of hydrogel samples under 10V was higher compare to those samples under 20 V and 30 V. The width and height changes of rectangular shapes and maximum deflection along the length of hydrogel sample due to a range of electric fields (0-30V) were measured using an optical microscope. Incremental shape change up to a specific threshold value (around 10V) was observed due to electric stimulus. Electrostatic actuation pressure of hydrogel samples under 10V was higher compare to those samples under 20 V and 30 V. These results suggested that optimal performance of PVA/PAA hydrogel can be achieved around 10V.

Abstract Image

直流电场中的聚乙烯醇/聚丙烯酸水凝胶:膨胀、形状变化和驱动特性。
在电刺激下,聚乙烯醇(PVA)/聚丙烯酸(PAA)水凝胶可作为仿生致动器和组织-植入体界面涂层材料。研究了PVA/PAA水凝胶在直流电场范围内的溶胀、形状变化和致动特性,找到了水凝胶作为仿生致动器和涂层材料的最佳电场。将PVA和PAA以4 wt%的比例溶解在去离子水中,以1:1的比例混合制备水凝胶样品。制作了两个定制的实验装置;一种用于测定水凝胶的溶胀率;另一种用于水凝胶的形状变化或驱动特性。膨胀实验表明,在10 V、20 V和30 V的电场作用下,水凝胶的膨胀率增加。水凝胶样品在10V下溶胀率的增加速率高于在20v和30v下的溶胀率。利用光学显微镜测量了在0-30V范围内电场作用下,矩形的宽度和高度变化以及水凝胶样品沿长度方向的最大偏转。由于电刺激,观察到增量形状变化直至特定阈值(约10V)。水凝胶样品在10V下的静电致动压力高于在20v和30v下的静电致动压力。这些结果表明,PVA/PAA水凝胶在10V左右可以达到最佳性能。
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