Nanoassemblies designed from semiconductor quantum dots and molecular arrays.

Nanoassemblies designed from semiconductor quantum dots and molecular arrays.
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DOI:
10.1021/jp040595a
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发表时间:
2005-04
期刊:
The journal of physical chemistry. B
影响因子:
--
通讯作者:
E. Zenkevich;F. Cichos;A. Shulga;E. Petrov;T. Blaudeck;C. von Borczyskowski
E. Zenkevich;F. Cichos;A. Shulga;E. Petrov;T. Blaudeck;C. von Borczyskowski
中科院分区:
其他
文献类型:
--
作者:
E. Zenkevich;F. Cichos;A. Shulga;E. Petrov;T. Blaudeck;C. von Borczyskowski

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The formation of nanoassemblies of CdSe/ZnS quantum dots (QD) and pyridyl-substituted free-base porphyrin (H(2)P) molecules has been spectroscopically identified by static and time-resolved techniques. The formation of nanoassemblies has been engineered by controlling the type and geometry of the H(2)P molecules. Pyridyl functionalization gives rise to a strong complex formation accompanied by QD photoluminescence (PL) quenching. For some of the systems, this quenching is partly related to fluorescence resonance energy transfer (FRET) from the QD to H(2)P and can be explained according to the Förster model. The quantitative interpretation of PL quenching due to complexation reveals that (i) on average only about (1)/(5) of the H(2)P molecules at a given H(2)P/QD molar ratio are assembled on the QD and (ii) only a limited number of "vacancies" accessible for H(2)P attachment exist on the QD surface.