4.6 Review

Light-Emitting Textiles: Device Architectures, Working Principles, and Applications

期刊

MICROMACHINES
卷 12, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/mi12060652

关键词

light-emitting e-textiles; alternating current electroluminescent devices; light emitting diodes; light electrochemical cells; polymeric optical fibers

资金

  1. ECO-sustainable and intelligent fibers and fabrics for TEChnic clothing (ECOTEC), PON <> 2014-2020 [Nffi ARS01_00951, CUP B66C18000300005]
  2. Progetto FISR-C.N.R. Tecnopolo di nanotecnologia e fotonica per la medicina di precisione [CUP B83B17000010001]

向作者/读者索取更多资源

E-textiles are a emerging technology that integrates displays, sensors, and other electronic components into fabric, with applications in healthcare, protective clothing, fashion, and sports. Light-emitting textiles have various applications such as sensing, fashion, and light therapy, which can be achieved through different integration methods. LEDs, either alone or coupled with POFs, are currently the most robust technology for light-emitting fabrics, while OLEDs show promise for the future but still have some issues to address.
E-textiles represent an emerging technology aiming toward the development of fabric with augmented functionalities, enabling the integration of displays, sensors, and other electronic components into textiles. Healthcare, protective clothing, fashion, and sports are a few examples application areas of e-textiles. Light-emitting textiles can have different applications: sensing, fashion, visual communication, light therapy, etc. Light emission can be integrated with textiles in different ways: fabricating light-emitting fibers and planar light-emitting textiles or employing side-emitting polymer optical fibers (POFs) coupled with light-emitting diodes (LEDs). Different kinds of technology have been investigated: alternating current electroluminescent devices (ACELs), inorganic and organic LEDs, and light-emitting electrochemical cells (LECs). The different device working principles and architectures are discussed in this review, highlighting the most relevant aspects and the possible approaches for their integration with textiles. Regarding POFs, the methodology to obtain side emissions and the critical aspects for their integration into textiles are discussed in this review. The main applications of light-emitting fabrics are illustrated, demonstrating that LEDs, alone or coupled with POFs, represent the most robust technology. On the other hand, OLEDs (Organic LEDs) are very promising for the future of light-emitting fabrics, but some issues still need to be addressed.

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