2022
DOI: 10.1039/d2tc01618d
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Smart textiles for human–machine interface fabricated via a facile on-site vapor-phase polymerization

Abstract: Conducting polymers have been widely employed for wearable sensing devices. Their unique compliance and flexibility endow higher tolerance to signal aberrations caused by mechanical mismatch compared to the rigid counterparts....

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Cited by 8 publications
(4 citation statements)
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“…716,717 Wang et al prepared fabric switches for HMI by depositing uniform and stable PEDOT:Tos films on the surface of spacer fabrics using the VPP method (Figure 33a). 718 Functionalized spacer fabrics are applied in tactile sensors, intelligent home fabric electronic switches, and fabric computing, demonstrating the application of the interactive sensor. Li et al prepared a full-fabric e-skin by integrating a highly flexible and compressible 3D spacer fabric with thermal PEDOT:PSS (Figure 33b).…”
Section: D/3d Textiles and Integrationmentioning
confidence: 99%
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“…716,717 Wang et al prepared fabric switches for HMI by depositing uniform and stable PEDOT:Tos films on the surface of spacer fabrics using the VPP method (Figure 33a). 718 Functionalized spacer fabrics are applied in tactile sensors, intelligent home fabric electronic switches, and fabric computing, demonstrating the application of the interactive sensor. Li et al prepared a full-fabric e-skin by integrating a highly flexible and compressible 3D spacer fabric with thermal PEDOT:PSS (Figure 33b).…”
Section: D/3d Textiles and Integrationmentioning
confidence: 99%
“…(a) PEDOT-coated spacer fabric for an electronic switch. Reproduced with permission from ref . Copyright 2022 Royal Society of Chemistry.…”
Section: Fabrication Techniques Of Semiconducting Polymer Fibers and ...mentioning
confidence: 99%
“…Researchers attempted depositing highly conductive polymers on the surface of fabrics. [ 17 ] However, e‐textiles prepared by surface coating often lack breathability, moisture permeability, or durability.…”
Section: Introductionmentioning
confidence: 99%
“…25 PED-OT:PSS can be employed as a conductive surface coating to deposit on a porous substrate. For example, PEDOT:PSS was coated on nanofiber network films, 26,27 fabric textiles, 28 and porous substrates. 29 Also, porous PEDOT:PSS composites can be prepared by methods such as lyophilization 30 and electrospinning.…”
Section: Introductionmentioning
confidence: 99%