Publikation:

Interconnection of Nanoparticles within 2D Superlattices of PbS/Oleic Acid Thin Films

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Datum

2014

Autor:innen

Simon, Paul
Bahrig, Lydia
Baburin, Igor A.
Formanek, Petr
Röder, Falk
Sickmann, Jan
Hickey, Stephen G.
Eychmüller, Alexander
Lichte, Hannes
Kniep, Rüdiger

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Core Facility der Universität Konstanz

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Published

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Advanced Materials. 2014, 26(19), pp. 3042-3049. ISSN 0935-9648. eISSN 1521-4095. Available under: doi: 10.1002/adma.201305667

Zusammenfassung

Make it connected! 2D close-packed layers of inorganic nanoparticles are interconnected by organic fibrils of oleic acid as clearly visualized by electron holography. These fibrils can be mineralised by PbS to transform an organic-inorganic framework to a completely interconnected inorganic semiconducting 2D array.

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Fachgebiet (DDC)
540 Chemie

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colloidal crystal, thin film, nanoparticle, PbS, electron holography, HR-TEM, EELS

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ISO 690SIMON, Paul, Lydia BAHRIG, Igor A. BABURIN, Petr FORMANEK, Falk RÖDER, Jan SICKMANN, Stephen G. HICKEY, Alexander EYCHMÜLLER, Hannes LICHTE, Rüdiger KNIEP, Elena V. STURM, 2014. Interconnection of Nanoparticles within 2D Superlattices of PbS/Oleic Acid Thin Films. In: Advanced Materials. 2014, 26(19), pp. 3042-3049. ISSN 0935-9648. eISSN 1521-4095. Available under: doi: 10.1002/adma.201305667
BibTex
@article{Simon2014Inter-30350,
  year={2014},
  doi={10.1002/adma.201305667},
  title={Interconnection of Nanoparticles within 2D Superlattices of PbS/Oleic Acid Thin Films},
  number={19},
  volume={26},
  issn={0935-9648},
  journal={Advanced Materials},
  pages={3042--3049},
  author={Simon, Paul and Bahrig, Lydia and Baburin, Igor A. and Formanek, Petr and Röder, Falk and Sickmann, Jan and Hickey, Stephen G. and Eychmüller, Alexander and Lichte, Hannes and Kniep, Rüdiger and Sturm, Elena V.}
}
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