Nanomaterials @ Interfaces Research Group

Prof. Yuval Golan's Research Group

Shape-dependent confinement in ultrasmall zero-, one-, and two-dimensional PbS nanostructures

Somobrata Acharya, D. D. Sarma, Yuval Golan, Sucheta Sengupta, Katsuhiko Ariga

(Figure Presented) Spatial dimensionality affects the degree of confinement when an electron-hole pair is squeezed from one or more dimensions approaching the bulk exciton Bohr radius (aB) limit. The electron-hole interaction in zero-dimensional (0D) dots, one-dimensional (1D) rods/wires, and two-dimensional (2D) wells/sheets should be enhanced by the increase in confinement dimensions in the order 0D > 1D > 2D. We report the controlled synthesis of PbS nanomaterials with 0D, 1D, and 2D forms retaining at least one dimension in the strongly confined regime far below aB (∼10 nm for PbS) and provide evidence through varying the exciton-phonon coupling strength that the degree of confinement is systematically weakened by the loss of confinement dimension. Geometry variations show distinguishable far-field optical polarizations, which could find useful applications in polarization-sensitive devices.

Publication language English
Pages 11282-11283
Journal Journal of the American Chemical Society
Volume 131
Issue number 32
Publication status Published - 19.08.2009

ASJC Scopus subject areas

Catalysis
General Chemistry
Biochemistry
Colloid and Surface Chemistry
Access to Document
10.1021/ja903539d
Other files and links
Link to publication in Scopus