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Hybrid EAPap actuator coated with multiwalled carbon nanotubes

机译:涂有多壁碳纳米管的混合eapap执行器

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Electro-Active Paper (EAPap) materials based on cellulose are attractive for many applications because of their low voltage operation, lightweight, dryness and low power consumption. In addition, EAPap materials are bio-degradable that is important property for artificial muscle actuators as bio-mimetic actuators with controlled properties and shapes. EAPap actuators have been made using cellulose papers coated with thin electrode layers. This actuator showed a reversible and reproducible bending movement. In order to improve both displacement and force of this, complementary conjugated novel material, composed of conductive polymer and carbon nanotubes, is coated on both sides of EAPap. This composite coated EAPap is termed as hybrid EAPap. Used composite consist of multi-walled carbon nanotubes (MWNT) and polyaniline (PANi). It is expected that the use of MWNT can enhance the stiffness of the tri-layered actuator as well as improving the force output. Furthermore, the presence of the MWNT/PANi electrodes may increase the actuation performance of the EAPap material. MWNTs are dispersed in NMP (1-Methyl-2-pyrrolidine), and the resulting suspension is mixed and sonicated with anion doped PANi. Obtained MWNT/PANi/NMP solution is cast on the EAPap by spin coating, and it is dried in a vacuum oven. The effect of processing parameters on the final performance of the composite electrodes is assessed and quantified in terms of the electrical conductivity under dc and ac measurement conditions. The actuation output of the MWNT/PANi/EAPap samples is tested in an environmental chamber in terms of free displacement and blocking force. The performance of the hybrid actuators is also investigated in terms of frequency, voltage and humidity to help shed light on the mechanism responsible for actuation. Comparison of these results in that of the EAPap with PANi and EAPap are also accomplished.
机译:基于纤维素的电活性纸(EAPAP)材料对于许多应用具有吸引力,因为它们的低电压操作,轻质,干燥和低功耗。此外,EAPAP材料是生物可降解的,这对于人造肌肉执行器作为具有受控性能和形状的生物模拟执行器的重要性质。使用涂有薄电极层的纤维素纸制备了EAPAP执行器。该执行器显示了可逆和可重复的弯曲运动。为了改善这种位移和力,由导电聚合物和碳纳米管组成的互补共轭新材料涂覆在eAPAP的两侧。该复合涂覆的EAPAP称为混合eapap。二手复合材料由多壁碳纳米管(MWNT)和聚苯胺(PANI)组成。预期MWNT的使用可以增强三层致动器的刚度以及改善力输出。此外,MWNT / PANI电极的存在可以增加EAPAP材料的致动性能。 MWNT分散在NMP(1-甲基-2-吡咯烷)中,并将所得悬浮液混合并用阴离子掺杂的Pani超声处理。通过旋涂,获得的MWNT / PANI / NMP溶液在eAPAP上浇铸,并在真空烘箱中干燥。在DC和AC测量条件下的电导率方面评估和量化处理参数对复合电极最终性能的影响。在自由位移和阻挡力方面,在环境室中测试MWNT / PANI / EAPAP样品的致动输出。在频率,电压和湿度方面还研究了混合动力执行器的性能,以帮助揭示负责致动的机构。这些结果的比较也可以实现与PANI和EAPAP的EAPAP的结果。

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