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Improving the optical and electroactive response of poly(vinylidene fluoride-trifluoroethylene) spin-coated films for sensor and actuator applications

机译:改善用于传感器和执行器应用的聚偏二氟乙烯-三氟乙烯旋涂膜的光学和电活性响应

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摘要

Poly(vinylidene fluoride-trifluoroethylene), P(VDF-TrFE), thin-films have been processed by spin-coating with controlled thickness. The influence of the thermal annealing and poling conditions on the properties of the material has been investigated. It is shown that thermal annealing strongly influences the microstructure and ferroelectric phase transition of the copolymer but does not significantly affect the degree of crystallinity of the samples. By increasing the annealing temperature, the samples undergo a transition from a microporous to a microfibrillar microstructure, accompanied by a decrease in the gauche defect density within the molecular chains that increases the ferroelectric transition temperature and enthalpy, and also influences the optical transparency of the films, which can achieve transmittances larger that 95% in the visible spectral range. The piezoelectric response of the material can be maximized by increasing the poling temperature at the cost of a decrease in the optical transparency of the film, due to the microstructural changes induced by the electrical field and the temperature. An optical transmittance as high as 90% along the visible spectral range is nevertheless maintained, demonstrating the suitability of the material for electroactive applications where transparency is also a relevant issue.
机译:聚(偏二氟乙烯-三氟乙烯),P(VDF-TrFE)薄膜已通过旋涂以受控的厚度进行处理。研究了热退火和极化条件对材料性能的影响。结果表明,热退火对共聚物的微观结构和铁电相变有很大影响,但对样品的结晶度没有明显影响。通过提高退火温度,样品经历了从微孔到微原纤微结构的转变,伴随着分子链中网状缺陷密度的降低,从而增加了铁电转变温度和焓,并且还影响了薄膜的光学透明性,可以在可见光谱范围内实现大于95%的透射率。由于电场和温度引起的微观结构变化,可以通过增加极化温度以降低膜的光学透明性为代价来最大化材料的压电响应。尽管如此,在可见光谱范围内仍可保持高达90%的透光率,这证明该材料适用于透明性也是一个重要问题的电活性应用。

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