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Highly efficient visible blue-emitting black phosphorus quantum dot: Mussel-inspired surface functionalization for bioapplications

Title
Highly efficient visible blue-emitting black phosphorus quantum dot: Mussel-inspired surface functionalization for bioapplications
Author(s)
Lee, Mi YeonPark, Young HoKang, Eun BiChae, A RiChoi, Yu JinJo, Seong HoKim, Yu JinPark, Soo JinMin, Byung GakAn, Tae KyuLee, Ji HoonIn, Su-IlKim, Sang YoulPark, Sung YoungIn, In Sik
DGIST Authors
In, Su-Il
Issued Date
2017-10
Type
Article
Article Type
Article
Keywords
MICROWAVE-ASSISTED SYNTHESISCARBON DOTSLITHIUM-IONGRAPHENEPHOTOLUMINESCENCELUMINESCENCEEXFOLIATIONFLUORESCENTDECAYRED
ISSN
2470-1343
Abstract
The preparation of blue-emitting black phosphorus quantum dots (BPQDs) is based on the liquid-phase exfoliation of bulk BP. We report the synthesis of soluble BPQDs showing a strong visible blue-light emission. Highly fluorescent (photoluminescence quantum yield of ~5% with the maximum emission (λmax) at ~437 nm) and dispersible BPQDs in various organic solvents are first prepared by simple ultrasonication of BP crystals in chloroform in the ambient atmosphere. Furthermore, simple mussel-inspired surface functionalization of BPQDs with catechol-grafted poly(ethylene glycol) in basic buffer afforded water-soluble blue-emitting BPQDs showing long-term fluorescence stability, very low cytotoxicity, and excellent fluorescence live cell imaging capability. © 2017 American Chemical Society.
URI
http://hdl.handle.net/20.500.11750/5663
DOI
10.1021/acsomega.7b01058
Publisher
American Chemical Society
Related Researcher
  • 인수일 In, Su-Il
  • Research Interests CO2 conversion to hydrocarbon fuels; Water splitting for hydrogen generation; Quantum dot devices; Dye sensitized solar cells; Environmental remediation; Synthesis of functional nanomaterials; CO2 연료전환; 수소생산을 위한 광전기화학적 물분해; 양자점 태양전지; 염료감응 태양전지; 공해물질 저감연구; 기능성 나노소재 개발
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Appears in Collections:
Department of Energy Science and Engineering Green and Renewable Energy for Endless Nature(GREEN) Lab 1. Journal Articles

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