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  5. Hybrid Solar Cells with Prescribed Nanoscale Morphologies Based on Hyperbranched Semiconductor Nanocrystals

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Article
en
2006

Hybrid Solar Cells with Prescribed Nanoscale Morphologies Based on Hyperbranched Semiconductor Nanocrystals

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0 Files

en
2006
Vol 7 (2)
Vol. 7
DOI: 10.1021/nl062660t

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Paul Alivisatos
Paul Alivisatos

University of Chicago

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Ilan Gur
Neil A. Fromer
Chih‐Ping Chen
+2 more

Abstract

In recent years, the search to develop large-area solar cells at low cost has led to research on photovoltaic (PV) systems based on nanocomposites containing conjugated polymers. These composite films can be synthesized and processed at lower costs and with greater versatility than the solid state inorganic semiconductors that comprise today's solar cells. However, the best nanocomposite solar cells are based on a complex architecture, consisting of a fine blend of interpenetrating and percolating donor and acceptor materials. Cell performance is strongly dependent on blend morphology, and solution-based fabrication techniques often result in uncontrolled and irreproducible blends, whose composite morphologies are difficult to characterize accurately. Here we incorporate three-dimensional hyperbranched colloidal semiconductor nanocrystals in solution-processed hybrid organic-inorganic solar cells, yielding reproducible and controlled nanoscale morphology.

How to cite this publication

Ilan Gur, Neil A. Fromer, Chih‐Ping Chen, Antonios G. Kanaras, Paul Alivisatos (2006). Hybrid Solar Cells with Prescribed Nanoscale Morphologies Based on Hyperbranched Semiconductor Nanocrystals. , 7(2), DOI: https://doi.org/10.1021/nl062660t.

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Publication Details

Type

Article

Year

2006

Authors

5

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/nl062660t

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