Bottom-Up Synthesis of Carbon Quantum Dots With High Performance Photo- and Electroluminescence

Authors
Kim, Hong HeeLee, Yeon JuPark, ChanhoYu, SeunggunWon, Sung OkSeo, Won-SeonPark, CheolminChoi, Won Kook
Issue Date
2018-07
Publisher
WILEY-V C H VERLAG GMBH
Citation
PARTICLE & PARTICLE SYSTEMS CHARACTERIZATION, v.35, no.7
Abstract
Although carbon quantum dots (CQDs) are of great interest because of cost effectiveness and environmental compatibility with the facile tunability of their optical properties, poor photo- and electroluminescence (EL) of CQDs limits further implementation. Here, a novel bottom-up synthetic route for fabricating highly crystalline CQDs suitable for high-brightness blue light-emitting diodes is demonstrated. The two-step solution process is based on time-controlled thermal carbonization of citric acid, followed by ligand exchange of the CQDs with oleylamine (OA) in solution. Carbonization allows for the nucleation and growth of crystalline CQDs, while OA treatment disperses the CQDs and stabilizes the solution, giving rise to CQDs with low structural defects and uniform sizes. The systematic study reveals the origin of the light emission of OA-treated CQDs by photoluminescence (PL) analysis, which yields a high quantum efficiency of approximate to 30%. The photoluminescence-optimized OA-treated CQDs exhibit excellent blue EL performance with a low turn-on voltage of approximate to 4 V and high brightness of 308 cd m(-2); a negligible voltage-dependent color shift when they are employed to an inverted light-emitting diode.
Keywords
LIGHT-EMITTING-DIODES; VISIBLE-LIGHT; NANOCRYSTALS; NANOSHEETS; NANODOTS; DEVICES; SINGLE; GRAPHITE; BRIGHT; ZNO; LIGHT-EMITTING-DIODES; VISIBLE-LIGHT; NANOCRYSTALS; NANOSHEETS; NANODOTS; DEVICES; SINGLE; GRAPHITE; BRIGHT; ZNO; bottom-up two step synthesis; carbon quantum dots; carbonization of citric acid; electroluminescence; inverted light emitting diode; photoluminescence; surface ligand exchange
ISSN
0934-0866
URI
https://pubs.kist.re.kr/handle/201004/121204
DOI
10.1002/ppsc.201800080
Appears in Collections:
KIST Article > 2018
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