Trion Formation Hampers Single Quantum Dot Performance in Silane-Coated FAPbBr<sub>3</sub> Quantum Dots.

Kline, Jessica; Kar, Shaoni; Hammel, Benjamin F; Huang, Yunping; Huang, Zixu; Marder, Seth R; Yazdi, Sadegh; Dukovic, Gordana et al. · Nano Lett · 2026

basic_science · Level V

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Abstract

We explore silane-coated formamidinium lead bromide (FAPbBr<sub>3</sub>) quantum dots (QDs) as single photon emitters and compare them to FAPbBr<sub>3</sub> QDs passivated with a phosphoethylammonium derivative (PEAC<sub>8</sub>C<sub>12</sub>), which represents current state-of-the-art ligand passivation. We compare properties including single-photon purity (g<sup>(2)</sup>(τ)), line width, blinking, and photostability. We find that at room temperature, these silane-coated dots perform comparably to PEAC<sub>8</sub>C<sub>12</sub>-passivated dots, while exhibiting improvements in photostability. However, we find that at 4 K, silane-coated FAPbBr<sub>3</sub> QDs perform worse than the PEAC<sub>8</sub>C<sub>12</sub>-passivated samples, exhibiting faster blue-shifting and photobleaching under illumination. Analysis of fluorescence lifetime intensity distributions from the photon-counting data indicates increased efficiency of fast nonradiative processes in the silane-coated QDs at 4 K. We propose a trion-related degradation pathway at low temperatures that is consistent with the observed kinetics and estimate that at 4 K with 6.1 μJ/cm<sup>2</sup>, 472 nm excitation the silane-coated QDs build up double the trion population of their PEAC<sub>8</sub>C<sub>12</sub>-passivated counterparts.