Department of Chemistry and James Franck Institute, University of Chicago, Chicago, Illinois 60637, USA.
J Am Chem Soc. 2012 Feb 8;134(5):2457-60. doi: 10.1021/ja2087689. Epub 2012 Jan 26.
Inorganic semiconductor nanocrystals (NCs) with bright, stable, and wavelength-tunable luminescence are very promising emitters for various photonic and optoelectronic applications. Recently developed strategies for inorganic surface capping of colloidal NCs using metal chalcogenide complexes have opened new perspectives for their applications. Here we report an all-inorganic surface functionalization of highly luminescent IR-emitting PbS-CdS NCs and studies of their luminescence properties. We show that inorganic capping allows simple low-temperature encapsulation of inorganic NCs into a solution-cast IR-transparent amorphous As(2)S(3) matrix. The resulting all-inorganic thin films feature stable IR luminescence in the telecommunication wavelength region. The high optical dielectric constant of As(2)S(3) also helps reduce the dielectric screening of the radiating field inside the quantum dot, enabling fast radiative recombination in PbS-CdS NCs.
无机半导体纳米晶体(NCs)具有明亮、稳定和波长可调谐的发光特性,是各种光子学和光电应用中非常有前途的发射器。最近开发的使用金属硫属化物配合物对胶体 NCs 进行无机表面封端的策略为它们的应用开辟了新的视角。在这里,我们报告了对高发光红外发射 PbS-CdS NCs 的全无机表面功能化及其发光性能的研究。我们表明,无机封端允许简单的低温将无机 NCs 封装到溶液浇铸的红外透明非晶 As(2)S(3)基质中。所得的全无机薄膜在电信波长区域具有稳定的红外发光。高光学介电常数的 As(2)S(3)还有助于减少量子点内辐射场的介电屏蔽,从而使 PbS-CdS NCs 中的快速辐射复合成为可能。