Laboratoire Physique et Etude des Matériaux, ESPCI/CNRS/UPMC UMR 8213, 10, rue Vauquelin, 75005 Paris, France.
ACS Nano. 2012 Aug 28;6(8):6741-50. doi: 10.1021/nn3024255. Epub 2012 Jul 23.
We report the synthesis and properties of a novel class of nanocrystals with mixed dimensionality: a dot-in-plate core/shell nanostructure. This system was synthesized by growing a flat, disk-shaped, CdS shell on spherical CdSe cores. The anisotropic pressure induced by the shell drastically splits the first exciton fine structure in two: the "heavy hole" and "light hole" states become separated by up to 65 meV. As a result, these nanocrystals exhibit an emission strongly polarized in two dimensions, in the plane perpendicular to the wurtzite crystal c axis. We use polarization measurements on single nanocrystals and ensemble anisotropy studies to confirm the nature and position of the excitonic energy levels. These nanocrystals orient spontaneously when evaporated on a substrate, enabling a precise control of the orientation of their emission dipole.
点在板核/壳纳米结构。通过在球形 CdSe 核上生长扁平的盘形 CdS 壳,合成了该体系。壳的各向异性压力将第一激子精细结构急剧分裂为两个:“重空穴”和“轻空穴”态分离高达 65 meV。因此,这些纳米晶体在垂直于纤锌矿晶体 c 轴的平面内表现出强烈的二维偏振发射。我们使用单个纳米晶体的偏振测量和整体各向异性研究来确认激子能级的性质和位置。这些纳米晶体在蒸发到基底上时会自发取向,从而能够精确控制其发射偶极子的取向。