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首页> 外文期刊>Journal of Applied Polymer Science >Tuning piezoelectric properties in elastomeric polyurethane nanocomposites utilizing cellulose nanocrystals
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Tuning piezoelectric properties in elastomeric polyurethane nanocomposites utilizing cellulose nanocrystals

机译:采用纤维素纳米晶体的弹性聚氨酯纳米复合材料调节压电性能

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Flexible piezoelectric nanocomposites have been the subject of a lot of recent research due to the development and use of wearable electronic devices and the increasing need for new harvesting devices and sensors due to increasingly intelligent and interconnected cities. In this study, flexible piezoelectric nanocomposites using elastomeric polyurethane (PU) as matrix, and lead zirconate titanate (PZT) as active phase, were produced using cellulose nanocrystals (CNC) as the third phase. The study describes the effect of CNC insertion on the morphology, thermal, electrical, and piezoelectric properties of the nanocomposites. It points out that the CNCs not only act to cause greater dispersion of the ceramic grains in the matrix, but also to lead to greater polarization effectiveness of the ceramic grains, resulting in a longitudinal piezoelectric coefficient (d(33)) increase of more than 370%, as compared with biphasic composites dependent on the ceramic and nanocrystals content.
机译:由于可穿戴电子设备的开发和使用,以及日益智能化和互联的城市对新型采集设备和传感器的需求日益增加,柔性压电纳米复合材料已成为许多近期研究的主题。本研究以弹性聚氨酯(PU)为基体,锆钛酸铅(PZT)为活性相,纤维素纳米晶(CNC)为第三相,制备了柔性压电纳米复合材料。该研究描述了CNC插入对纳米复合材料的形态、热、电和压电性能的影响。它指出,与依赖于陶瓷和纳米晶体含量的两相复合材料相比,CNC不仅使陶瓷颗粒在基体中更分散,而且使陶瓷颗粒的极化效率更高,导致纵向压电系数(d(33))增加370%以上。

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