Foldable and washable textile-based OLEDs with a multi-functional near-room-temperature encapsulation layer for smart e-textiles

Author:

Jeong So Yeong,Shim Hye Rin,Na Yunha,Kang Ki Suk,Jeon Yongmin,Choi Seungyeop,Jeong Eun Gyo,Park Yong Cheon,Cho Ha-Eun,Lee Junwoo,Kwon Jeong Hyun,Im Sung GapORCID,Choi Kyung CheolORCID

Abstract

AbstractWearable electronic devices are being developed because of their wide potential applications and user convenience. Among them, wearable organic light emitting diodes (OLEDs) play an important role in visualizing the data signal processed in wearable electronics to humans. In this study, textile-based OLEDs were fabricated and their practical utility was demonstrated. The textile-based OLEDs exhibited a stable operating lifetime under ambient conditions, enough mechanical durability to endure the deformation by the movement of humans, and washability for maintaining its optoelectronic properties even in water condition such as rain, sweat, or washing. In this study, the main technology used to realize this textile-based OLED was multi-functional near-room-temperature encapsulation. The outstanding impermeability of TiO2 film deposited at near-room-temperature was demonstrated. The internal residual stress in the encapsulation layer was controlled, and the device was capped by highly cross-linked hydrophobic polymer film, providing a highly impermeable, mechanically flexible, and waterproof encapsulation.

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,General Materials Science

Reference40 articles.

1. Jeon, Y. et al. A wearable photobiomodulation patch using a flexible red-wavelength OLED and its in vitro differential cell proliferation effects. Adv. Mater. Technol. 3, 1–10 (2018).

2. Jeon, Y. et al. Sandwich-structure transferable free-form OLEDs for wearable and disposable skin wound photomedicine. Light Sci. Appl. 8, 1–15 (2019).

3. Lee, H. et al. Toward all-day wearable health monitoring: an ultralow-power, reflective organic pulse oximetry sensing patch. Sci. Adv. 4, 1–9 (2018).

4. Kwon, S. et al. Weavable and highly efficient organic light-emitting fibers for wearable electronics: a scalable, low-temperature process. Nano Lett. 18, 347–356 (2018).

5. Kim, W. et al. Reliable actual fabric-based organic light-emitting diodes: toward a wearable display. Adv. Electron. Mater. 2, 1–7 (2016).

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