All‐Printed Electrochromic Stickers.

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Title: All‐Printed Electrochromic Stickers.
Authors: Brooke, Robert1 (AUTHOR), Freitag, Kathrin1 (AUTHOR), Petsagkourakis, Ioannis1 (AUTHOR), Nilsson, Marie1 (AUTHOR), Andersson Ersman, Peter1 (AUTHOR) peter.andersson.ersman@ri.se
Source: Macromolecular Materials & Engineering. Sep2023, Vol. 308 Issue 9, p1-6. 6p.
Subjects: Electrochromic devices, Stickers, Printed electronics, Electrochromic windows, Curved surfaces, Screen process printing
Abstract: Displays are one of the most mature technologies in the field of printed electronics. Their ability to be manufactured in large quantities and at low cost has led to their recent uptake into the consumer market. Within this article this technology is extended to electrochromic display stickers. This is achieved using a recent reverse display architecture screen printed on textile and paper sticker substrates. The electrochromic stickers are comparable to plastic control substrates and show little performance difference even when adhered to curved surfaces. The electrochromic display technology is extended to sticker labels for authentication applications by patterning either the dielectric or the graphical layer. A proof‐of‐concept prototype emulating a wax seal on an envelope is presented to show that other colors can be implemented in this technology. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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Abstract:Displays are one of the most mature technologies in the field of printed electronics. Their ability to be manufactured in large quantities and at low cost has led to their recent uptake into the consumer market. Within this article this technology is extended to electrochromic display stickers. This is achieved using a recent reverse display architecture screen printed on textile and paper sticker substrates. The electrochromic stickers are comparable to plastic control substrates and show little performance difference even when adhered to curved surfaces. The electrochromic display technology is extended to sticker labels for authentication applications by patterning either the dielectric or the graphical layer. A proof‐of‐concept prototype emulating a wax seal on an envelope is presented to show that other colors can be implemented in this technology. [ABSTRACT FROM AUTHOR]
ISSN:14387492
DOI:10.1002/mame.202300044