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Electromechanical response of silk fibroin hydrogel and conductive polycarbazole/silk fibroin hydrogel composites as actuator material

机译:丝素蛋白水凝胶和导电聚咔唑/丝素蛋白水凝胶复合材料作为促动器材料的机电响应

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摘要

Pure silk fibroin (SF) hydrogel and polycarbazole/silk fibroin (SF/PCZ) hydrogels were fabricated by solvent casting technique to evaluate electromechanical responses, dielectric properties, and cantilever deflection properties as functions of electric field strength, SF concentration, glutaraldehyde concentration, and PCZ concentration in the blends. Electromechanical properties were characterized in oscillatory shear mode at electric field strengths ranging from 0 to 600 V/mm and at a temperature of 27 °C For both the pristine SF and SF/PCZ hydrogels, the storage modulus response (AC) and the storage modulus sensitivity (AG'/G'o) increased dramatically with increasing electric field strength. The pristine hydrogel possessed the highest storage modulus sensitivity value of 5.87, a relatively high value when compared with other previously studied electroactive polymers. With the addition of conductive PCZ in SF hydrogel, the storage modulus sensitivity and the relative dielectric constant decreased; the conductive polymer thus provided the softening effect under electric field. In the deflection response, the dielectrophoresis force and deflection distance increased monotonically with electric field strength, where the pure SF hydrogel showed the highest deflection distance and dielectrophoresis force.
机译:通过溶剂浇铸技术制备纯丝素蛋白(SF)水凝胶和聚咔唑/丝素蛋白(SF / PCZ)水凝胶,以评估机电响应,介电特性和悬臂挠度特性与电场强度,SF浓度,戊二醛浓度和共混物中的PCZ浓度。在振荡剪切模式下,电场强度范围为0至600 V / mm,温度为27°C时,表征机电性能。对于原始SF和SF / PCZ水凝胶,储能模量响应(AC)和储能模量灵敏度(AG'/ G'o)随着电场强度的增加而急剧增加。原始水凝胶的最高储能模量敏感性值为5.87,与先前研究的其他电活性聚合物相比,具有相对较高的值。在SF水凝胶中添加导电性PCZ后,储能模量灵敏度和相对介电常数降低。因此,导电聚合物在电场下提供了软化作用。在偏转响应中,介电电泳力和偏转距离随电场强度单调增加,其中纯SF水凝胶表现出最高的偏转距离和介电电泳力。

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