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July 29, 2010Science822 citationsOpen Access

Ultrathin PbS Sheets by Two-Dimensional Oriented Attachment

CSConstanze SchlieheBJBeatriz H. JuárezMPMarie Pelletier

Key Points

  • This research aims to explore the assembly of lead sulfide nanocrystals into ultrathin sheets using oriented attachment to improve material properties.
  • Two-dimensional oriented attachment process employed for lead sulfide nanocrystals
  • Utilization of cosolvents to modulate nucleation and growth rates
  • Integration of obtained nanosheets into photodetector devices without further treatment
  • Ultrathin lead sulfide nanosheets achieved with large micrometer-scale dimensions
  • Process initiated by cosolvents allowing controlled nucleation
  • Nanosheets exhibit dense packing of oleic acid ligands on {100} facets, enhancing structural integrity

Abstract

Controlling anisotropy is a key concept in the generation of complex functionality in advanced materials. For this concept, oriented attachment of nanocrystal building blocks, a self-assembly of particles into larger single-crystalline objects, is one of the most promising approaches in nanotechnology. We report here the two-dimensional oriented attachment of lead sulfide (PbS) nanocrystals into ultrathin single-crystal sheets with dimensions on the micrometer scale. We found that this process is initiated by cosolvents, which alter nucleation and growth rates during the primary nanocrystal formation, and is finally driven by dense packing of oleic acid ligands on 100 facets of PbS. The obtained nanosheets can be readily integrated in a photodetector device without further treatment.

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Cite This Study

Schliehe et al. (2010) studied this question.

synapsesocial.com/papers/69d94e107fca1f84ab6849e4https://doi.org/10.1126/science.1188035
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