Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/5079
Title: UV-A Flexible LEDs Based on Core–Shell GaN/AlGaN Quantum Well Microwires
Authors: Mendez, N A
Kochetkov, F M
Hernandez, R
Neplokh, V
Grenier, V
Finot, S
Valera, L
Duraz, J
Fominykh, N
Parshina, E K
Deriabin, K V
Islamova, R M
Herth, E
Bouchoule, S
Julien, F
Abraham, M
Das, S
Jacopin, G
Krasnikov, D V
Eymery, J
Durand, C
Mukhin, I S
Tchernycheva, M
Keywords: flexible electronics
diodes
electromagnetic radiation
membranes
wires
Issue Date: 11-Sep-2024
Publisher: American Chemical Society
Citation: ACS Applied Materials & Interfaces; 16(38):51000–51009
Abstract: Nanostructured ultraviolet (UV) light sources represent a growing research field in view of their potential applications in wearable optoelectronics or medical treatment devices. In this work, we report the demonstration of the first flexible UV-A light emitting diode (LED) based on AlGaN/GaN core–shell microwires. The device is based on a composite microwire/poly(dimethylsiloxane) (PDMS) membrane with flexible transparent electrodes. The electrode transparency in the UV range is optimized: namely, we demonstrate that single-walled carbon nanotube electrodes provide a stable electrical contact to the membrane with high transparency (70% at 350 nm). The flexible UV-A membrane demonstrating electroluminescence around 345 nm is further applied to excite Zn–Ir–BipyPDMS luminophores: the UV-A LED is combined with the elastic luminophore-containing membrane to produce a visible amber emission from 520 to 650 nm. The obtained results pave the way for flexible inorganic light-emitting diodes to be employed in sensing, detection of fluorescent labels, or light therapy.
URI: https://pubs.acs.org/doi/10.1021/acsami.4c06181
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