2022
DOI: 10.1063/5.0123409
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Enhancing the optical and electrical properties of AlGaN ultraviolet-C micro-LED via a hybrid scheme of plasma and chemical treatment

Abstract: Ultraviolet band C (UV-C) micro light-emitting diodes (micro-LEDs) provide a high energy light emission of 200–280 nm, which are brilliantly utilized in optogenetics, communications, and fluorescence. However, the limited device efficiency notably restricts the grand potential application field. In this work, three types of 20 × 20  μm2 UV-C micro-LEDs with the peak wavelength of 269 nm are fabricated by different etching strategies, including an inductively coupled plasma (ICP), post-ICP tetramethylammonium h… Show more

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Cited by 14 publications
(13 citation statements)
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“…Thus, the emission of the 100 µm 2 ‐µLEDs is strongly influenced by light extraction than that of the 400 µm 2 ‐µLEDs. [ 51–54 ] Taken together, the EQE of the 100 µm 2 ‐µLEDs decreases after TMAH treatment even though the IQE increases because the sidewall smoothening reduces the light extraction.…”
Section: Resultsmentioning
confidence: 99%
“…Thus, the emission of the 100 µm 2 ‐µLEDs is strongly influenced by light extraction than that of the 400 µm 2 ‐µLEDs. [ 51–54 ] Taken together, the EQE of the 100 µm 2 ‐µLEDs decreases after TMAH treatment even though the IQE increases because the sidewall smoothening reduces the light extraction.…”
Section: Resultsmentioning
confidence: 99%
“…To define the mesa area more accurately, silicon oxide is patterned by photoresist as a hard mask for mesa etching in the inductively coupled plasma (ICP). Tetramethylammonium hydroxide (TMAH) treatment is involved as a post-ICP course to reduce sidewall damages for a preferable radiative recombination rate (13). A thin Ni/Au current spreading layer is first e-beam evaporated on the p-GaN layer and rapidly thermal annealed at 550℃.…”
Section: Methodsmentioning
confidence: 99%
“…[147] Furthermore, recent research efforts have spotlighted the UV-C micro-LEDs on the color-conversion displays by tristimulus QDs. [148] Benefiting from the high QD absorbance and separated color emission from the pumping [150] Size-dependent d) optical power and e) EQE of UV-C micro-LEDs under various injection current densities. [148] (a-c) Reproduced with permission.…”
Section: Qd Micro-ledmentioning
confidence: 99%