Cargando…
Disentangling the evolution of electrons and holes in photoexcited ZnO nanoparticles
The evolution of charge carriers in photoexcited room temperature ZnO nanoparticles in solution is investigated using ultrafast ultraviolet photoluminescence spectroscopy, ultrafast Zn K-edge absorption spectroscopy, and ab initio molecular dynamics (MD) simulations. The photoluminescence is excited...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Crystallographic Association
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10628992/ https://www.ncbi.nlm.nih.gov/pubmed/37941994 http://dx.doi.org/10.1063/4.0000204 |
_version_ | 1785131867401355264 |
---|---|
author | Milne, Christopher J. Nagornova, Natalia Pope, Thomas Chen, Hui-Yuan Rossi, Thomas Szlachetko, Jakub Gawelda, Wojciech Britz, Alexander van Driel, Tim B. Sala, Leonardo Ebner, Simon Katayama, Tetsuo Southworth, Stephen H. Doumy, Gilles March, Anne Marie Lehmann, C. Stefan Mucke, Melanie Iablonskyi, Denys Kumagai, Yoshiaki Knopp, Gregor Motomura, Koji Togashi, Tadashi Owada, Shigeki Yabashi, Makina Nielsen, Martin M. Pajek, Marek Ueda, Kiyoshi Abela, Rafael Penfold, Thomas J. Chergui, Majed |
author_facet | Milne, Christopher J. Nagornova, Natalia Pope, Thomas Chen, Hui-Yuan Rossi, Thomas Szlachetko, Jakub Gawelda, Wojciech Britz, Alexander van Driel, Tim B. Sala, Leonardo Ebner, Simon Katayama, Tetsuo Southworth, Stephen H. Doumy, Gilles March, Anne Marie Lehmann, C. Stefan Mucke, Melanie Iablonskyi, Denys Kumagai, Yoshiaki Knopp, Gregor Motomura, Koji Togashi, Tadashi Owada, Shigeki Yabashi, Makina Nielsen, Martin M. Pajek, Marek Ueda, Kiyoshi Abela, Rafael Penfold, Thomas J. Chergui, Majed |
author_sort | Milne, Christopher J. |
collection | PubMed |
description | The evolution of charge carriers in photoexcited room temperature ZnO nanoparticles in solution is investigated using ultrafast ultraviolet photoluminescence spectroscopy, ultrafast Zn K-edge absorption spectroscopy, and ab initio molecular dynamics (MD) simulations. The photoluminescence is excited at 4.66 eV, well above the band edge, and shows that electron cooling in the conduction band and exciton formation occur in <500 fs, in excellent agreement with theoretical predictions. The x-ray absorption measurements, obtained upon excitation close to the band edge at 3.49 eV, are sensitive to the migration and trapping of holes. They reveal that the 2 ps transient largely reproduces the previously reported transient obtained at 100 ps time delay in synchrotron studies. In addition, the x-ray absorption signal is found to rise in ∼1.4 ps, which we attribute to the diffusion of holes through the lattice prior to their trapping at singly charged oxygen vacancies. Indeed, the MD simulations show that impulsive trapping of holes induces an ultrafast expansion of the cage of Zn atoms in <200 fs, followed by an oscillatory response at a frequency of ∼100 cm(−1), which corresponds to a phonon mode of the system involving the Zn sub-lattice. |
format | Online Article Text |
id | pubmed-10628992 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Crystallographic Association |
record_format | MEDLINE/PubMed |
spelling | pubmed-106289922023-11-08 Disentangling the evolution of electrons and holes in photoexcited ZnO nanoparticles Milne, Christopher J. Nagornova, Natalia Pope, Thomas Chen, Hui-Yuan Rossi, Thomas Szlachetko, Jakub Gawelda, Wojciech Britz, Alexander van Driel, Tim B. Sala, Leonardo Ebner, Simon Katayama, Tetsuo Southworth, Stephen H. Doumy, Gilles March, Anne Marie Lehmann, C. Stefan Mucke, Melanie Iablonskyi, Denys Kumagai, Yoshiaki Knopp, Gregor Motomura, Koji Togashi, Tadashi Owada, Shigeki Yabashi, Makina Nielsen, Martin M. Pajek, Marek Ueda, Kiyoshi Abela, Rafael Penfold, Thomas J. Chergui, Majed Struct Dyn Articles The evolution of charge carriers in photoexcited room temperature ZnO nanoparticles in solution is investigated using ultrafast ultraviolet photoluminescence spectroscopy, ultrafast Zn K-edge absorption spectroscopy, and ab initio molecular dynamics (MD) simulations. The photoluminescence is excited at 4.66 eV, well above the band edge, and shows that electron cooling in the conduction band and exciton formation occur in <500 fs, in excellent agreement with theoretical predictions. The x-ray absorption measurements, obtained upon excitation close to the band edge at 3.49 eV, are sensitive to the migration and trapping of holes. They reveal that the 2 ps transient largely reproduces the previously reported transient obtained at 100 ps time delay in synchrotron studies. In addition, the x-ray absorption signal is found to rise in ∼1.4 ps, which we attribute to the diffusion of holes through the lattice prior to their trapping at singly charged oxygen vacancies. Indeed, the MD simulations show that impulsive trapping of holes induces an ultrafast expansion of the cage of Zn atoms in <200 fs, followed by an oscillatory response at a frequency of ∼100 cm(−1), which corresponds to a phonon mode of the system involving the Zn sub-lattice. American Crystallographic Association 2023-11-03 /pmc/articles/PMC10628992/ /pubmed/37941994 http://dx.doi.org/10.1063/4.0000204 Text en © 2023 Author(s). https://creativecommons.org/licenses/by/4.0/All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ). |
spellingShingle | Articles Milne, Christopher J. Nagornova, Natalia Pope, Thomas Chen, Hui-Yuan Rossi, Thomas Szlachetko, Jakub Gawelda, Wojciech Britz, Alexander van Driel, Tim B. Sala, Leonardo Ebner, Simon Katayama, Tetsuo Southworth, Stephen H. Doumy, Gilles March, Anne Marie Lehmann, C. Stefan Mucke, Melanie Iablonskyi, Denys Kumagai, Yoshiaki Knopp, Gregor Motomura, Koji Togashi, Tadashi Owada, Shigeki Yabashi, Makina Nielsen, Martin M. Pajek, Marek Ueda, Kiyoshi Abela, Rafael Penfold, Thomas J. Chergui, Majed Disentangling the evolution of electrons and holes in photoexcited ZnO nanoparticles |
title | Disentangling the evolution of electrons and holes in photoexcited ZnO nanoparticles |
title_full | Disentangling the evolution of electrons and holes in photoexcited ZnO nanoparticles |
title_fullStr | Disentangling the evolution of electrons and holes in photoexcited ZnO nanoparticles |
title_full_unstemmed | Disentangling the evolution of electrons and holes in photoexcited ZnO nanoparticles |
title_short | Disentangling the evolution of electrons and holes in photoexcited ZnO nanoparticles |
title_sort | disentangling the evolution of electrons and holes in photoexcited zno nanoparticles |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10628992/ https://www.ncbi.nlm.nih.gov/pubmed/37941994 http://dx.doi.org/10.1063/4.0000204 |
work_keys_str_mv | AT milnechristopherj disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT nagornovanatalia disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT popethomas disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT chenhuiyuan disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT rossithomas disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT szlachetkojakub disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT gaweldawojciech disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT britzalexander disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT vandrieltimb disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT salaleonardo disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT ebnersimon disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT katayamatetsuo disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT southworthstephenh disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT doumygilles disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT marchannemarie disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT lehmanncstefan disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT muckemelanie disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT iablonskyidenys disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT kumagaiyoshiaki disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT knoppgregor disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT motomurakoji disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT togashitadashi disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT owadashigeki disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT yabashimakina disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT nielsenmartinm disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT pajekmarek disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT uedakiyoshi disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT abelarafael disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT penfoldthomasj disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles AT cherguimajed disentanglingtheevolutionofelectronsandholesinphotoexcitedznonanoparticles |