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Application of functionalised MXene‑carbon nanoparticle‑polymer composites in resistive hydrostatic pressure sensors

机译:功能化的MXene-碳纳米颗粒-聚合物复合材料在电阻式静水压力传感器中的应用

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The synthesised and functionalised materials were characterised using TEM, SEM, Raman and P-XRD. The characterisation techniques confirmed that a successful functionalisation of Ti_3AlC_2, the synthesised and functional groups on the carbon nanoparticles. The TEM and SEM were also used to study the surface morphology of the materials. The pressure sensor was fabricated by depositing the polymer composites on the IDE and different types of pressure sensors were prepared by varying the sensing materials in the composites. Generally, the fabricated sensors, based on the two polymers, Ppy and PVP polymer, have shown a linear relationship between the applied pressure and the relative resistance response in their respective ranges. The best sensitive sensors were f-MC/Ppy bases sensor 0.00232 kPa~(−1) in a range from 126 to 168 kPa, in a very wide range, 68–168 kPa, the sensitivity of the f-MC/CNPs based sensor was 0.00017 kPa~(−1). The sensors recoveries and responses time were also studied and all the sensors based on Ppy polymer responded very fast as compare to PVP based sensors, they responded just in one second and the recovery time was between 3 and 5 s. The PVP based sensors found slower to respond and recover as compare to the Ppy based sensors.
机译:使用TEM,SEM,Raman和P-XRD对合成和功能化的材料进行表征。表征技术证实了Ti_3AlC_2(碳纳米粒子上的合成官能团)的成功官能化。 TEM和SEM也用于研究材料的表面形态。通过将聚合物复合材料沉积在IDE上来制造压力传感器,并通过改变复合材料中的传感材料来制备不同类型的压力传感器。通常,基于两种聚合物(Ppy和PVP聚合物)制造的传感器在各自的范围内已显示出所施加压力与相对电阻响应之间的线性关系。灵敏度最高的传感器是f-MC / Ppy基础传感器0.00232 kPa〜(-1),范围从126至168 kPa,在68-168 kPa的非常宽的范围内,基于f-MC / CNPs的传感器的灵敏度为0.00017kPa〜(-1)。还研究了传感器的回收率和响应时间,与基于PVP的传感器相比,所有基于Ppy聚合物的传感器响应速度都非常快,响应时间仅为一秒钟,恢复时间为3到5 s。与基于Ppy的传感器相比,基于PVP的传感器的响应和恢复速度较慢。

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