Encyclopedia of Polymer Science and Technology 2023
DOI: 10.1002/0471440264.pst137.pub2
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Fluorinated Elastomers

Abstract: Fluorinated elastomers (FEs) are unique materials bearing exceptional properties and involved in High Tech applications (electronics, car, aerospace, and petrochemical industries and microelectronics) where they resist to stringent conditions, showing peculiar softness and resilience over a wide range of temperatures. This article mainly reports on (per)fluorocarbon elastomers, fluorophosphazenes, fluorosilicones, and perfluoropolyethers as well as controlled thermoplastic elastomers for which several properti… Show more

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Cited by 3 publications
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“…Currently, these specialty polymers are also involved in specific UV and aging resistant coatings and have been involved in many other applications: (i) Wires and cables in wide domains such as aerospace (because of their high limiting oxygen index value, PTFE coatings ensure fire retardancy in several-hundred-kilometer cables and connections in planes), insulation (insulation resistance ≥ 1500 MΩ.km), electrical applications, and high-frequency (5000 V) performance in coaxial cables for avionics and high-temperatureresistant cables for aeroengine services [71]. The resilience and inertness of crosslinked elastomers provide exceptional performance to gaskets in shuttles [72]. (ii) Materials for energy storage and conversion (as key candidates for the energetic transition: cathode binders in lithium ion batteries, proton exchange fuel cell membranes, backsheets of photovoltaic panels, electroactive (piezoelectric and electrothermal) devices [73], haptics, printed electronics, dielectrics, for virtual reality, and actuators for artificial muscles, and are indispensable drivers of the European Green Deal).…”
Section: Fluoropolymers (Ie Backbone Containing C-f Bonds) Valuable F...mentioning
confidence: 99%
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“…Currently, these specialty polymers are also involved in specific UV and aging resistant coatings and have been involved in many other applications: (i) Wires and cables in wide domains such as aerospace (because of their high limiting oxygen index value, PTFE coatings ensure fire retardancy in several-hundred-kilometer cables and connections in planes), insulation (insulation resistance ≥ 1500 MΩ.km), electrical applications, and high-frequency (5000 V) performance in coaxial cables for avionics and high-temperatureresistant cables for aeroengine services [71]. The resilience and inertness of crosslinked elastomers provide exceptional performance to gaskets in shuttles [72]. (ii) Materials for energy storage and conversion (as key candidates for the energetic transition: cathode binders in lithium ion batteries, proton exchange fuel cell membranes, backsheets of photovoltaic panels, electroactive (piezoelectric and electrothermal) devices [73], haptics, printed electronics, dielectrics, for virtual reality, and actuators for artificial muscles, and are indispensable drivers of the European Green Deal).…”
Section: Fluoropolymers (Ie Backbone Containing C-f Bonds) Valuable F...mentioning
confidence: 99%
“…The most prevalent materials are PTFE [61], PVDF [73,85], poly(chlorotrifluoroethylene), PCTFE [86], and the copolymers based on tetrafluoroethylene, TFE [87], and vinylidene fluoride, VDF [88], which can be either thermoplastics or elastomers [72]. Usually, in their conditions of uses, FPs are safe, stable (thermally, chemically against UV and aging, and biologically), durable, non-toxic, non-bioaccumulative, insoluble in water and thus nonmobile, hydrolytically stable, and are not subject to hydrolysis-catalyzed or -metabolized degradation.…”
Section: Fluoropolymers (Ie Backbone Containing C-f Bonds) Valuable F...mentioning
confidence: 99%