Emission-tunable microwave synthesis of highly luminescent water soluble CdSe/ZnS quantum dots.
Publication
, Journal Article
Roy, MD; Herzing, AA; De Paoli Lacerda, SH; Becker, ML
Published in: Chemical communications (Cambridge, England)
May 2008
Water soluble CdSe/ZnS nanoparticles with emission maxima from 511 nm to 596 nm and quantum efficiencies ranging from 11% to 28% are synthesized in a facile two-step method in ambient atmospheric conditions using a commercially available microwave reactor.
Duke Scholars
Published In
Chemical communications (Cambridge, England)
DOI
EISSN
1364-548X
ISSN
1359-7345
Publication Date
May 2008
Issue
18
Start / End Page
2106 / 2108
Related Subject Headings
- Zinc Compounds
- Water
- Sulfides
- Solubility
- Selenium Compounds
- Quantum Theory
- Quantum Dots
- Particle Size
- Organic Chemistry
- Nanoparticles
Citation
APA
Chicago
ICMJE
MLA
NLM
Roy, M. D., Herzing, A. A., De Paoli Lacerda, S. H., & Becker, M. L. (2008). Emission-tunable microwave synthesis of highly luminescent water soluble CdSe/ZnS quantum dots. Chemical Communications (Cambridge, England), (18), 2106–2108. https://doi.org/10.1039/b800060c
Roy, Marc D., Andrew A. Herzing, Silvia H. De Paoli Lacerda, and Matthew L. Becker. “Emission-tunable microwave synthesis of highly luminescent water soluble CdSe/ZnS quantum dots.” Chemical Communications (Cambridge, England), no. 18 (May 2008): 2106–8. https://doi.org/10.1039/b800060c.
Roy MD, Herzing AA, De Paoli Lacerda SH, Becker ML. Emission-tunable microwave synthesis of highly luminescent water soluble CdSe/ZnS quantum dots. Chemical communications (Cambridge, England). 2008 May;(18):2106–8.
Roy, Marc D., et al. “Emission-tunable microwave synthesis of highly luminescent water soluble CdSe/ZnS quantum dots.” Chemical Communications (Cambridge, England), no. 18, May 2008, pp. 2106–08. Epmc, doi:10.1039/b800060c.
Roy MD, Herzing AA, De Paoli Lacerda SH, Becker ML. Emission-tunable microwave synthesis of highly luminescent water soluble CdSe/ZnS quantum dots. Chemical communications (Cambridge, England). 2008 May;(18):2106–2108.
Published In
Chemical communications (Cambridge, England)
DOI
EISSN
1364-548X
ISSN
1359-7345
Publication Date
May 2008
Issue
18
Start / End Page
2106 / 2108
Related Subject Headings
- Zinc Compounds
- Water
- Sulfides
- Solubility
- Selenium Compounds
- Quantum Theory
- Quantum Dots
- Particle Size
- Organic Chemistry
- Nanoparticles