Quantifying Photoinduced Polaronic Distortions in Inorganic Lead Halide Perovskite Nanocrystals. 2021

Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
Laboratory of Ultrafast Spectroscopy (LSU) and Lausanne Centre for Ultrafast Science (LACUS), École Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.

The development of next-generation perovskite-based optoelectronic devices relies critically on the understanding of the interaction between charge carriers and the polar lattice in out-of-equilibrium conditions. While it has become increasingly evident for CsPbBr3 perovskites that the Pb-Br framework flexibility plays a key role in their light-activated functionality, the corresponding local structural rearrangement has not yet been unambiguously identified. In this work, we demonstrate that the photoinduced lattice changes in the system are due to a specific polaronic distortion, associated with the activation of a longitudinal optical phonon mode at 18 meV by electron-phonon coupling, and we quantify the associated structural changes with atomic-level precision. Key to this achievement is the combination of time-resolved and temperature-dependent studies at Br K and Pb L3 X-ray absorption edges with refined ab initio simulations, which fully account for the screened core-hole final state effects on the X-ray absorption spectra. From the temporal kinetics, we show that carrier recombination reversibly unlocks the structural deformation at both Br and Pb sites. The comparison with the temperature-dependent XAS results rules out thermal effects as the primary source of distortion of the Pb-Br bonding motif during photoexcitation. Our work provides a comprehensive description of the CsPbBr3 perovskites' photophysics, offering novel insights on the light-induced response of the system and its exceptional optoelectronic properties.

UI MeSH Term Description Entries

Related Publications

Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
February 2022, ACS applied materials & interfaces,
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
March 2019, Nanoscale,
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
March 2017, Journal of the American Chemical Society,
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
October 2019, ACS nano,
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
February 2016, Chemical communications (Cambridge, England),
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
June 2023, Materials horizons,
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
August 2021, Physical chemistry chemical physics : PCCP,
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
October 2017, Angewandte Chemie (International ed. in English),
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
January 2016, Advanced materials (Deerfield Beach, Fla.),
Oliviero Cannelli, and Nicola Colonna, and Michele Puppin, and Thomas C Rossi, and Dominik Kinschel, and Ludmila M D Leroy, and Janina Löffler, and James M Budarz, and Anne Marie March, and Gilles Doumy, and Andre Al Haddad, and Ming-Feng Tu, and Yoshiaki Kumagai, and Donald Walko, and Grigory Smolentsev, and Franziska Krieg, and Simon C Boehme, and Maksym V Kovalenko, and Majed Chergui, and Giulia F Mancini
February 2024, ACS applied materials & interfaces,
Copied contents to your clipboard!