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Structure and electrical properties of PAni.CSA/PMMA nanofibers prepared by electrospinning method

TARIQ J. ALWAN1,* , FATIMA S. JALI1

Affiliation

  1. Physics Department, College of Education, Al-Mustansiriyah University, Baghdad, Iraq

Abstract

The nanofibers are considered as one of the types of one-dimensional nanomaterials, which have numerous advantages when compared to conventional fibers. The PAni.CSA/PMMA nanofibers was produced successfully by using the electrospinning method, and to know the control conditions of the size, structure and morphology of PAni.CSA/PMMA nanofibers, they were studied under the effect of the zone length between the needle and target, and applied voltage parameters. The AFM and SEM were used to study the morphology and the average diameters of the nanofibers. The smallest value of nanofibers average diameters was when the applied voltage 20 KV, the flow rate was 5 ml/h and 10 cm the zone length between the needle and target. The structure and electrical properties of nanofibers were also studied..

Keywords

The nanofibers are considered as one of the types of one-dimensional nanomaterials, which have numerous advantages when compared to conventional fibers. The PAni.CSA/PMMA nanofibers was produced successfully by using the electrospinning method, and to know the control conditions of the size, structure and morphology of PAni.CSA/PMMA nanofibers, they were studied under the effect of the zone length between the needle and target, and applied voltage parameters. The AFM and SEM were used to study the morphology and the average diameters of the nanofibers. The smallest value of nanofibers average diameters was when the applied voltage 20 KV, the flow rate was 5 ml/h and 10 cm the zone length between the needle and target. The structure and electrical properties of nanofibers were also studied..

Citation

TARIQ J. ALWAN, FATIMA S. JALI, Structure and electrical properties of PAni.CSA/PMMA nanofibers prepared by electrospinning method, Optoelectronics and Advanced Materials - Rapid Communications, 12, 1-2, January-February 2018, pp.100-107 (2018).

Submitted at: April 24, 2017

Accepted at: Feb. 12, 2018