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IR Spectroscopy of Carboxylate-Passivated Semiconducting Nanocrystals: Simulation and Experiment

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arxiv 2403.18779 v1 pith:HJSKG57Z submitted 2024-03-27 physics.chem-ph cond-mat.mes-hallcond-mat.mtrl-sci

classification physics.chem-phcond-mat.mes-hallcond-mat.mtrl-sci
keywords ligandsbindinggeometriesnanocrystalspassivatedsignalspectroscopyspectrum
verification ladder T0 review T1 audit T2 compute T3 formal
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Surfaces of colloidal nanocrystals are frequently passivated with carboxylate ligands which exert significant effects on their optoelectronic properties and chemical stability. Experimentally, binding geometries of such ligands are typically investigated using vibrational spectroscopy, but the interpretation of the IR signal is usually not trivial. Here, using machine-learning (ML) algorithms trained on DFT data, we simulate an IR spectrum of a lead-rich PbS nanocrystal passivated with butyrate ligands. We obtain a good agreement with the experimental signal and demonstrate that the observed line shape stems from a very wide range of `tilted-bridge'-type geometries and does not indicate a coexistence of `bridging' and `chelating' binding modes as has been previously assumed. This work illustrates limitations of empirical spectrum assignment and demonstrates the effectiveness of ML-driven molecular dynamics simulations in reproducing IR spectra of nanoscopic systems.

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