Huang Yan, Li Yi, Yang Yanxin, Wu Yibo, Shi Qisong
Beijing Key Lab of Special Elastomeric Composite Materials, College of New Materials and Chemical Engineering, Beijing Institute of Petrochemical Technology, Beijing, 102617, People's Republic of China.
Nanotechnology. 2024 Mar 18;35(23). doi: 10.1088/1361-6528/ad2f1d.
Flexible piezoelectric devices have attracted much attention in the fields of intelligent devices and biomedicine because of their high sensitivity, stability, and flexibility. In this paper, a multifunctional flexible pressure sensor was prepared by adding polyacrylonitrile (PAN) and carboxylic-terminated multi-walled carbon nanotubes (c-MWCNTs) with polyvinylidene difluoride (PVDF) as the substrate. The-phase content of PVDF/PAN blended fibers compounded with c-MWCNT was up to 95%. At the same time, when PAN was added, the mechanical properties of the composite fibers were constantly improved. The results show that the polymer blending method can improve the comprehensive properties of PVDF composite. The flexible sensor prepared from the PVDF/PAN/c-MWCNT composite film has an output voltage of 2.1 V and a current of 7A. The addition of c-MWCNT can largely improve the sensitivity of the sensor (4.19 V N). The sensor is attached to the finger and shows good output performance under different degrees of bending of the finger. The maximum output voltage of the sensor is 0.4 V, 0.56 V and 1.15 V when the finger bending angle is 30°, 60°, and 90°, respectively. Moreover, the developed piezoelectric sensor can monitor large-scale movements of various parts of the human body. Therefore, this composite material shows potential in areas such as motion monitoring and energy storage devices.
柔性压电器件因其高灵敏度、稳定性和柔韧性,在智能设备和生物医学领域备受关注。本文以聚偏氟乙烯(PVDF)为基底,通过添加聚丙烯腈(PAN)和羧基化多壁碳纳米管(c-MWCNTs)制备了一种多功能柔性压力传感器。与c-MWCNT复合的PVDF/PAN共混纤维的β相含量高达95%。同时,添加PAN时,复合纤维的力学性能不断提高。结果表明,聚合物共混方法可以改善PVDF复合材料的综合性能。由PVDF/PAN/c-MWCNT复合薄膜制备的柔性传感器输出电压为2.1 V,电流为7A。添加c-MWCNT可大幅提高传感器的灵敏度(4.19 V/N)。该传感器附着在手指上,在手指不同程度弯曲时表现出良好的输出性能。当手指弯曲角度分别为30°、60°和90°时,传感器的最大输出电压分别为0.4 V、0.56 V和1.15 V。此外,所研制的压电传感器可监测人体各部位的大幅度运动。因此,这种复合材料在运动监测和储能设备等领域显示出潜力。