Light-emitting Ti2N (MXene) quantum dots: synthesis, characterization and theoretical calculations
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Title
- Light-emitting Ti2N (MXene) quantum dots: synthesis, characterization and theoretical calculations
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Author(s)
- Sharbirin, Anir S.; Roy, Shrawan; Tran, Trang Thu; Akhtar, Sophia; Singh, Jaspal; Dinh Loc Duong; Kim, Jeongyong
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Publication Date
- 2022-04
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Journal
- JOURNAL OF MATERIALS CHEMISTRY C, v.10, no.16, pp.6508 - 6514
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Publisher
- ROYAL SOC CHEMISTRY
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Abstract
- © The Royal Society of Chemistry 2022. MXene-based quantum dots (MQDs), which are obtained by fragmenting MXenes into a nanometer scale, can display photoluminescence (PL), suggesting light-emitting applications for bandgap-less MXenes. However, despite the diverse possible formations of MXene components, only carbide MXene-based MQDs have been reported to emit light. In this study, we synthesized water-soluble MQDs with an average diameter of 3.14 nm using the titanium nitride (Ti2N) MXene. Ti2N MQDs exhibited efficient PL, with a maximum quantum yield of 7.5%, upon light absorption over the deep UV wavelength range of 400-230 nm. The density functional theory calculations and PL excitation measurements identified a bandgap of 3.8 eV and the existence of an unfulfilled band (E-1) between the occupied low-energy (E-0) and unoccupied high-energy (E-2) bands, which induces strong absorption in deep UV energy originating from the E-0-E-2 transition. Light-emitting nitride MQDs expand and facilitate the UV optoelectronic applications of MQDs.
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URI
- https://pr.ibs.re.kr/handle/8788114/11448
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DOI
- 10.1039/d2tc00568a
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ISSN
- 2050-7526
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Appears in Collections:
- Center for Integrated Nanostructure Physics(나노구조물리 연구단) > 1. Journal Papers (저널논문)
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