Handbook of Smart Textiles 2015
DOI: 10.1007/978-981-4451-68-0_32-1
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Applications of Electrospun Nanofibers for Electronic Devices

Abstract: In recent decades, electrospinning of nanofibers has progressed very rapidly in both scientific and technological aspects, and electrospun nanofibers have shown enormous potential for various applications. In particular, electrospun nanofibers have significantly enhanced the application performance of many electronic devices, such as solar cells, mechanical-to-electric energy harvesters, rechargeable batteries, supercapacitors, sensors, field-effect transistors, diodes, photodetectors, and electrochromic devic… Show more

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Cited by 6 publications
(5 citation statements)
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“…These properties make nanofibers superior from the other fibers. Due to these superior properties nanofibers are extensively used in different fields for different application purposes, such as medical applications (wound dressing 1,2 drug delivery system [3][4][5] ), aerospace applications 6,7 , electronics applications (transistors, capacitors, energy storage devices) 8,9 . Different techniques have been used to produce nanofibers.…”
Section: In-vitro Assessment Of Appropriate Hydrophilic Scaffolds By mentioning
confidence: 99%
“…These properties make nanofibers superior from the other fibers. Due to these superior properties nanofibers are extensively used in different fields for different application purposes, such as medical applications (wound dressing 1,2 drug delivery system [3][4][5] ), aerospace applications 6,7 , electronics applications (transistors, capacitors, energy storage devices) 8,9 . Different techniques have been used to produce nanofibers.…”
Section: In-vitro Assessment Of Appropriate Hydrophilic Scaffolds By mentioning
confidence: 99%
“…Li + ions migrate through the electrolyte, and electrons flow through the external circuit. De-lithiation reaction (charge process): 2 , with x = 6 and y ∼ = 0.5.…”
Section: Appl Sci 2018 8mentioning
confidence: 99%
“…The wide variety of intriguing nanomaterials with outstanding physical and chemical properties that can be produced by electrospinning (natural and synthetic polymers, ceramic oxides, carbon and composite carbon-based fibers, and fibrous flexible membranes with hierarchical porosity) find application in a plethora of both well-assessed and emerging applications, spanning from healthcare and biomedical engineering (e.g., wound dressing, biological sensing, drug and therapeutic agent delivery, tissue regeneration, and engineering) to environmental protection and remediation (e.g., chemical and gas sensing, photocatalytic abatement of pollutants, water treatment), from energy harvesting, generation, and storage (e.g., solar cells, hydrogen production and storage, supercapacitors, batteries, and fuel cells) to electronics (e.g., field-effect transistors, diodes, photodetectors, and electrochromic devices) [1][2][3][4][5][6][7][8][9][10].…”
Section: Introductionmentioning
confidence: 99%
“…Due to the high demand for the technology, composite polymers have gained more attention over the past decade, either as synthetic-synthetic or synthetic-natural polymers. Additional nanoparticles in nanofibers enhance the properties for multiple applications such as in the electronic industries [21,22].…”
Section: Introductionmentioning
confidence: 99%