Composition control and localization of S2- in CdSSe quantum dots grown from Li4[Cd10Se4(SPh)16].
J Am Chem Soc
; 130(50): 17004-11, 2008 Dec 17.
Article
em En
| MEDLINE
| ID: mdl-19053476
The development of ternary nanoscale materials with controlled cross-sectional doping is an important step for the use of chemically prepared quantum dots for nanoscale engineering applications. We report cross-sectional, elemental doping with the formation of an alloyed CdSSe nanocrystal from the thermal decomposition of Li(4)[Cd(10)Se(4)(SPh)(16)]. The sulfur incorporation arises from surface-mediated phenylthiolate degradation on the growing quantum dot surface. In the alloy, we identify a pure CdSe nucleus of approximately 1.5 nm, consistent with the predictions of nucleation theory. As the particle grows, S(2-) incorporation increases until the CdSSe reaches approximately 4 nm, where a marked reduction in phenylthiolate content on the nanocrystal is observed by CP-MAS NMR spectroscopy, implying that rapid decomposition of the phenylthiolate arises with subsequent enhanced S(2-) incorporation at the level of the stoichiometry of the reaction (namely approximately 60%). The use of molecular clusters to allow controlled defect ion incorporation can open new pathways to more complex nanomaterials.
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MEDLINE
Assunto principal:
Compostos Organometálicos
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Compostos de Enxofre
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Compostos de Selênio
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Compostos de Cádmio
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Pontos Quânticos
Idioma:
En
Ano de publicação:
2008
Tipo de documento:
Article