Jannika Lauth
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jannikalauth.bsky.social
Jannika Lauth
@jannikalauth.bsky.social
Interested in 2D materials and ultrafast spectroscopy for photonics, JProf at Uni Tübingen/Group Leader at Uni Hannover
Another one! We like being confined to the max. Together with our colleagues from Lille, we study a new class of flat quantum dots with efficient SWIR emission!
pubs.acs.org/doi/10.1021/...
Monolayer-Defined Flat Colloidal PbSe Quantum Dots in Extreme Confinement
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.
pubs.acs.org
July 28, 2025 at 6:39 AM
Reposted by Jannika Lauth
𝐖𝐄 𝐀𝐑𝐄 #𝐇𝐈𝐑𝐈𝐍𝐆 on the 𝐏𝐇𝐃 & 𝐏𝐎𝐒𝐓𝐃𝐎𝐂 level!
If you are interested in #spectroscopy & #materials science for spin-/optoelectronics, please consider joining our team. Details on the positions and how to apply:
www.feldmannlab.com/open-positions
Sharing with your network is greatly appreciated!🙏:) #EPFL
April 22, 2025 at 6:11 AM
André has dared to perovskites. Check out our new work in Adv. Opt. Mat. on funneling, recombination and exciton self-trapping in colloidal 2D MAPbBr3 nanosheets
(in longstanding collaboration with @klinkelab.bsky.social)

advanced.onlinelibrary.wiley.com/doi/10.1002/...
Understanding the Optoelectronic Processes in Colloidal 2D Multi‐Layered MAPbBr3 Perovskite Nanosheets: Funneling, Recombination and Self‐Trapped Excitons
Mechanisms by which excitons and charge carriers can funnel and recombine in 2D multi-layered MAPbBr3 Ruddlesden-Popper perovskite nanosheets are missing. This femtosecond transient absorption spectr...
advanced.onlinelibrary.wiley.com
April 3, 2025 at 11:24 AM