Department of Chemistry, University of Washington , Seattle, Washington 98195-1700, United States.
J Am Chem Soc. 2017 Aug 30;139(34):11814-11824. doi: 10.1021/jacs.7b04938. Epub 2017 Aug 16.
Doping lanthanide ions into colloidal semiconductor nanocrystals is a promising strategy for combining their sharp and efficient 4f-4f emission with the strong broadband absorption and low-phonon-energy crystalline environment of semiconductors to make new solution-processable spectral-conversion nanophosphors, but synthesis of this class of materials has proven extraordinarily challenging because of fundamental chemical incompatibilities between lanthanides and most intermediate-gap semiconductors. Here, we present a new strategy for accessing lanthanide-doped visible-light-absorbing semiconductor nanocrystals by demonstrating selective cation exchange to convert precursor Yb-doped NaInS nanocrystals into Yb-doped PbInS nanocrystals. Excitation spectra and time-resolved photoluminescence measurements confirm that Yb is both incorporated within the PbInS nanocrystals and sensitized by visible-light photoexcitation of these nanocrystals. This combination of strong broadband visible absorption, sharp near-infrared emission, and long (>400 μs) emission lifetimes in a colloidal nanocrystal system opens promising new opportunities for both fundamental-science and next-generation spectral-conversion applications such as luminescent solar concentrators.
将镧系元素离子掺杂到胶体半导体纳米晶体中是一种很有前途的策略,它可以将其尖锐高效的 4f-4f 发射与半导体的宽带强吸收和低声子能晶态环境结合起来,制造出新型的可溶液处理的光谱转换纳米荧光粉,但由于镧系元素与大多数中间带隙半导体之间的基本化学不相容性,这类材料的合成极具挑战性。在这里,我们提出了一种新的策略,可以通过证明选择性阳离子交换将前驱体 Yb 掺杂的 NaInS 纳米晶体转化为 Yb 掺杂的 PbInS 纳米晶体,从而获得可见吸收的镧系掺杂半导体纳米晶体。激发光谱和时间分辨光致发光测量证实,Yb 不仅掺入到 PbInS 纳米晶体中,而且还可以通过这些纳米晶体的可见光光激发来敏化。这种胶体纳米晶体系中强宽带可见吸收、尖锐的近红外发射以及长(>400 μs)发射寿命的组合,为基础科学和下一代光谱转换应用(如发光太阳能集中器)开辟了有前途的新机会。