2014 IEEE 9th IberoAmerican Congress on Sensors 2014
DOI: 10.1109/ibersensor.2014.6995537
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Sensor response of electrospun poly(lactic acid)/polyaniline nanofibers to aliphatic alcohol vapors of varying sizes

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Cited by 6 publications
(5 citation statements)
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“…Several types of electrospun PANI nanofiber based sensors have been developed lately. Recent reports include the electrospun nanofiber of graphene/PANI/PS for the detection of Pb and Cd ions [165], PANI/SnO 2 for H 2 gas sensing [166], multiple detections using PANI/PCL [167], PANI/polyamide 66 for colorimetric sensing [168], PANI/poly(ethylene oxide) gas sensor [169], PANI/ZnO for chemiresistor sensor [170], PANI/PLA to sense alcohol vapors of increasing molecular size [171], PANI/polyvinylidene fluoride as strain sensor [172], high sensitivity gas sensors based on PANI/PMMA [173], PANI/fibroin microfibrous mat as reactive sensor [174], and PANI/polyamide 6/TiO 2 nanofibers for ammonia sensor [175,176].…”
Section: Applications Of Electrospun Pani Nanofibersmentioning
confidence: 99%
“…Several types of electrospun PANI nanofiber based sensors have been developed lately. Recent reports include the electrospun nanofiber of graphene/PANI/PS for the detection of Pb and Cd ions [165], PANI/SnO 2 for H 2 gas sensing [166], multiple detections using PANI/PCL [167], PANI/polyamide 66 for colorimetric sensing [168], PANI/poly(ethylene oxide) gas sensor [169], PANI/ZnO for chemiresistor sensor [170], PANI/PLA to sense alcohol vapors of increasing molecular size [171], PANI/polyvinylidene fluoride as strain sensor [172], high sensitivity gas sensors based on PANI/PMMA [173], PANI/fibroin microfibrous mat as reactive sensor [174], and PANI/polyamide 6/TiO 2 nanofibers for ammonia sensor [175,176].…”
Section: Applications Of Electrospun Pani Nanofibersmentioning
confidence: 99%
“…Overall, the results of this study suggest that electrospun PLA/PANI nanofibers can be used as sensitive and selective sensors for detecting aliphatic alcohol vapors. The high sensitivity and selectivity of these nanofibers, as well as their low cost and ease of fabrication, make them attractive for use in a variety of sensing applications [ 107 ].…”
Section: Applicationsmentioning
confidence: 99%
“…Electrospinning is the preferred method of fabricating PLA fibers with diameters in the sub-micrometer range under ambient conditions. [6][7][8][9][10][11][12][13] There exists abundant research on PLA/carbon nanofibers [14][15][16][17][18][19] but there are limited investigations into the production of PLA composite nanofibers containing conducting macromolecules. [9][10][11]20,21 In such composite PLA fibers, however, the PLA concentration exceeded 10 wt% causing the fibers to become insulating due to lack of percolation of the conducting polymer and therefore unsuitable for use as the active component in electrical applications.…”
Section: Introductionmentioning
confidence: 99%
“…[6][7][8][9][10][11][12][13] There exists abundant research on PLA/carbon nanofibers [14][15][16][17][18][19] but there are limited investigations into the production of PLA composite nanofibers containing conducting macromolecules. [9][10][11]20,21 In such composite PLA fibers, however, the PLA concentration exceeded 10 wt% causing the fibers to become insulating due to lack of percolation of the conducting polymer and therefore unsuitable for use as the active component in electrical applications. 20,21 At concentrations lower than 10 wt%, no PLA fibers could be electro-spun.…”
Section: Introductionmentioning
confidence: 99%