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VERSION:2.0
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SUMMARY:FLEXIBLE TRIBOELECTRIC NANOGENERATORS FOR A SELF CHARGING SYSTEM I
 N MOBILE ELECTRONICS
DTSTART:20240122T090000Z
DTEND:20240122T110000Z
DTSTAMP:20260809T105921Z
UID:937b9f7f-878b-4c3e-8aee-ff02b8d6a92b
SEQUENCE:2
CREATED:20240117T110329Z
DESCRIPTION:Abstract: Textile triboelectric nano-generators (TENGs) are pr
 omising solution for wearable\, self-powered sensing technology. However\,
  to develop textile TENGs with high output power in adaptable devices usin
 g industrial textile compatible techniques for embedded textile electronic
 s is still challenging. In this work\, a flexible triboelectric textile is
  developed by using printed graphene electrodes and the textile as a tribo
 electric pair with different deposition methods. The flexible TENG exhibit
 s steady output performance under heavy deformation and their sensitivity 
 to movement was investigated as a wearable sensor to monitor biomechanical
  movements. This work paves the door for the seamless incorporation of sel
 f-powered wearable sensing technology into textiles by offering a flexible
  method for creating flexible triboelectric textile fabrics using industri
 ally suitable printing textile processes.
LAST-MODIFIED:20240117T111607Z
LOCATION:Sala P12 Pavilhão de Matemática\, Piso 2
URL:http://df.vps.tecnico.ulisboa.pt/pt/eventos/flexible-triboelectric-nan
 ogenerators-for-a-self-charging-system-in-mobile-electronics/
X-ALT-DESC;FMTTYPE=text/html:<p data-block-key="lsc1w">Abstract: Textile t
 riboelectric nano-generators (TENGs) are promising solution for wearable\,
  self-powered sensing technology. However\, to develop textile TENGs with 
 high output power in adaptable devices using industrial textile compatible
  techniques for embedded textile electronics is still challenging.<br/><br
 /> In this work\, a flexible triboelectric textile is developed by using p
 rinted graphene electrodes and the textile as a triboelectric pair with di
 fferent deposition methods. The flexible TENG exhibits steady output perfo
 rmance under heavy deformation and their sensitivity to movement was inves
 tigated as a wearable sensor to monitor biomechanical movements.<br/><br/>
  This work paves the door for the seamless incorporation of self-powered w
 earable sensing technology into textiles by offering a flexible method for
  creating flexible triboelectric textile fabrics using industrially suitab
 le printing textile processes.</p>
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