Capacitance and output current control by CNT correction in the CNT/PVDF composite films for electronic devices

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Abstract

The carbon nanotube/poly-vinylidene fluoride (CNT/PVDF) composite films for the use of electronic devices were fabricated by spray coating method using the CNT/PVDF solution, which was prepared by adding PVDF pellets into the CNT dispersed N-Methyl-2-pyrroli-done (NMP) solution. The CNT/PVDF composite films were peeled off from the glass substrate and were investigated by the scanning electron microscopy, which revealed that the CNTs were uniformly dispersed in the PVDF films and thickness of the films were approximately 20 μm. The capacitance of the CNT/PVDF films increased dramatically by adding CNTs into the PVDF matrix, and finally saturated approximately 1880 pF. However, the I-V curves didn't show any saturation effect in the CNT concentration range of 0 0.04 wt%. Therefore we can control the performance of the devices from the CNT/PVDF composite film by adjusting the current level resulted from the CNT concentration with the uniform capacitance value.

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APA

Lee, S., No, I. J., Shin, P. K., & Kim, Y. (2013). Capacitance and output current control by CNT correction in the CNT/PVDF composite films for electronic devices. Transactions of the Korean Institute of Electrical Engineers, 62(8), 1115–1119. https://doi.org/10.5370/KIEE.2013.62.8.1115

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