单层
量子点
光致发光
材料科学
激子
扫描隧道显微镜
带隙
分子物理学
光谱学
量子隧道
结合能
纳米晶
光电子学
凝聚态物理
纳米技术
化学
物理
原子物理学
量子力学
作者
Leon Biesterfeld,Huu Thoai Ngo,Ahmed Addad,Dominik Rudolph,Wolfgang Leis,Michael Seitz,Gang Ji,B. Grandidier,Christophe Delerue,Jannika Lauth,Louis Biadala
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-07-28
卷期号:25 (31): 12019-12024
被引量:2
标识
DOI:10.1021/acs.nanolett.5c02957
摘要
Colloidal 2D PbX (X = S, Se, Te) nanocrystals are innovative materials pushing the boundaries of quantum confinement by combining crystal thicknesses down to a monolayer with additional confinement in the lateral dimension. These flat PbSe quantum dots (fQDs) exhibit telecommunication band photoluminescence (1.43-0.83 eV), which is highly interesting for fiber optic information processing. With scanning tunneling microscopy/spectroscopy (STM/STS), we probe single-layer-defined fQD populations down to one monolayer, showing an in-gap state free QD-like density of states in excellent agreement with theoretical tight-binding (TB) calculations. Cryogenic ensemble spectra match STS/STM and TB calculations and exhibit the contribution of mono-, bi-, and trilayers to the photoluminescence. Comparing the electronic band gaps with the optical ones, we derive exciton binding energies as high as 600 meV for PbSe monolayers. Our results allow for a target-oriented synthesis of a new class of QDs with record binding energies and precisely tailored optical properties at technologically relevant wavelengths.
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