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Compatibilization of porphyrins for use as high permittivity fillers in low voltage actuating silicone dielectric elastomers

机译:卟啉的相容化用作低压致动硅氧烷介电弹性体的高介电常数填料

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Polysiloxanes represent, because of their unusual properties, a material with great potential for use in dielectric elastomers (DEs), a promising class of electroactive polymers. Currently, their application as actuators is limited by the need for high driving voltages, as a result of the low relative permittivity possessed by polysiloxanes (~2–3). Reducing these voltages can be achieved to some degree by using high permittivity additives to improve the permittivity of the polysiloxane. However, modifying such additives so that they are compatible with, and can be dispersed within, polysiloxane elastomers remains challenging. For reliable actuation, full miscibility is key. In this work the porphyrin 5,10,15,20-(tetra-3-methoxyphenyl)porphyrin (TPMP) was investigated as a high permittivity additive. Its behaviour was compared to the analogue that was derivatized with bis(trimethylsiloxy)methylsilane groups using the Piers–Rubinsztajn reaction to improve compatability with silicone formulations. The derivatized porphyrin was dispersed in elastomers and their dielectric and mechanical properties were evaluated. It was discovered that only low levels of incorporation (1–10%) of the siliconized TPMP – much lower than the parent TPMP – were needed to elicit improvements in the permittivity and electromechanical actuation of the elastomers; actuation strains of up to 43% could be achieved using this method.
机译:由于其不同寻常的特性,聚硅氧烷代表,一种具有巨大用作介电弹性体(DES)的材料,其具有很大的电活性聚合物。目前,由于聚硅氧烷(〜2-3)所具有的低相对介电常数,它们的应用是致动器的限制。通过使用高介电常数添加剂可以在一定程度上实现降低这些电压以改善聚硅氧烷的介电常数。然而,改性这些添加剂使得它们与之兼容,并且可以分散在内,聚硅氧烷弹性体保持挑战性。为了可靠的致动,充分溶解是关键。在这项工作中,研究了卟啉5,10,15,20-(四-3-甲氧基苯基)卟啉(TPMP)作为高介电常积累添加剂。将其行为与使用Piers-RubinsZtajn反应的双(三甲基硅氧烷)甲基硅烷基团衍生化的类似物,以改善与硅氧烷制剂的相容性。将衍生化的卟啉分散在弹性体中,并评估它们的电介质和机械性能。发现只有低含量的硅化TPMP(1-10%) - 远低于母体TPMP - 以引发弹性体的介电常数和机电驱动的改进;可以使用该方法实现高达43%的致动菌株。

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