首页> 外文期刊>Sensors and Actuators, A. Physical >Comparative displacement study of bilayer actuators comprising of conducting polymers, fabricated from polypyrrole, poly(3,4- ethylenedioxythiophene) or poly(3,4-propylenedioxythiophene)
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Comparative displacement study of bilayer actuators comprising of conducting polymers, fabricated from polypyrrole, poly(3,4- ethylenedioxythiophene) or poly(3,4-propylenedioxythiophene)

机译:由聚吡咯,聚(3,4-乙二氧基噻吩)或聚(3,4-丙二氧基噻吩)制成的包含导电聚合物的双层执行器的比较位移研究

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摘要

The stress gradient generated due to electrochemical oxidation/reduction of a conducting polymer in a bilayer actuator causes a bending movement. Here we report a comparative study of the displacement of bilayer actuators prepared using different conducting polymers. The effects of conducting polymers obtained from electrochemical or chemical synthesis route: different polymers (polypyrrole (PPy), poly(3,4-ethylenedioxythiophene) PEDOT and poly(3,3-dihexyl-3-4-dihydro-2H-thieno[3,4b][1,4]-dioxepine [PProDOT(Hx) 2]); and different electrolytes (0.1 M lithium trifluromethanesulfonate/propylenecarbonate (LiTFSI/PC) and 1-ethyl-3-methyl imidazolium trifluromethanesulfonate (EMITFSI)) on the displacement amplitude and displacement patterns of these actuators were investigated and compared. The results indicate that the bilayer actuator consisting of an electrochemically synthesized conducting polymer exhibits far greater displacements compared to chemically synthesized polymers at the same stimulating voltage. Similarly, amongst the three conducting polymers considered, the PPY actuator showed greater displacement followed by PProDOT and PEDOT. Furthermore, the use of different electrolyte solution during polymerization as well as during actuation was found to affect not only displacement distance but also its pattern.
机译:由于双层致动器中的导电聚合物的电化学氧化/还原而产生的应力梯度会引起弯曲运动。在这里,我们报告使用不同的导电聚合物制备的双层执行器的位移的比较研究。通过电化学或化学合成途径获得的导电聚合物的影响:不同的聚合物(聚吡咯(PPy),聚(3,4-亚乙二氧基噻吩)PEDOT和聚(3,3-二己基-3-4-dihydro-2H-thieno [3] ,4b] [1,4]-二氧杂环丁烷[PProDOT(Hx)2]);以及不同的电解质(0.1 M三氟甲烷磺酸锂/碳酸亚丙酯(LiTFSI / PC)和1-乙基-3-甲基咪唑鎓三氟甲烷磺酸(EMITFSI))对这些致动器的位移幅度和位移模式进行了研究和比较,结果表明,在相同的激励电压下,由电化学合成的导电聚合物组成的双层致动器比化学合成的聚合物表现出更大的位移。 ,PPY执行器的排量更大,其次是PProDOT和PEDOT,此外,在聚合过程中和启动期间使用不同的电解液不仅影响位移距离,而且影响其模式。

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