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Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy

[Image: see text] Understanding the surface of semiconductor nanocrystals (NCs) prepared using colloidal methods is a long-standing goal of paramount importance for all their potential optoelectronic applications, which remains unsolved largely because of the lack of site-specific physical technique...

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Autores principales: Piveteau, Laura, Ong, Ta-Chung, Walder, Brennan J., Dirin, Dmitry N., Moscheni, Daniele, Schneider, Barbara, Bär, Janine, Protesescu, Loredana, Masciocchi, Norberto, Guagliardi, Antonietta, Emsley, Lyndon, Copéret, Christophe, Kovalenko, Maksym V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6161058/
https://www.ncbi.nlm.nih.gov/pubmed/30276244
http://dx.doi.org/10.1021/acscentsci.8b00196
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author Piveteau, Laura
Ong, Ta-Chung
Walder, Brennan J.
Dirin, Dmitry N.
Moscheni, Daniele
Schneider, Barbara
Bär, Janine
Protesescu, Loredana
Masciocchi, Norberto
Guagliardi, Antonietta
Emsley, Lyndon
Copéret, Christophe
Kovalenko, Maksym V.
author_facet Piveteau, Laura
Ong, Ta-Chung
Walder, Brennan J.
Dirin, Dmitry N.
Moscheni, Daniele
Schneider, Barbara
Bär, Janine
Protesescu, Loredana
Masciocchi, Norberto
Guagliardi, Antonietta
Emsley, Lyndon
Copéret, Christophe
Kovalenko, Maksym V.
author_sort Piveteau, Laura
collection PubMed
description [Image: see text] Understanding the surface of semiconductor nanocrystals (NCs) prepared using colloidal methods is a long-standing goal of paramount importance for all their potential optoelectronic applications, which remains unsolved largely because of the lack of site-specific physical techniques. Here, we show that multidimensional (113)Cd dynamic nuclear polarization (DNP) enhanced NMR spectroscopy allows the resolution of signals originating from different atomic and magnetic surroundings in the NC cores and at the surfaces. This enables the determination of the structural perfection, and differentiation between the surface and core atoms in all major forms of size- and shape-engineered CdSe NCs: irregularly faceted quantum dots (QDs) and atomically flat nanoplatelets, including both dominant polymorphs (zinc-blende and wurtzite) and their epitaxial nanoheterostructures (CdSe/CdS core/shell quantum dots and CdSe/CdS core/crown nanoplatelets), as well as magic-sized CdSe clusters. Assignments of the NMR signals to specific crystal facets of oleate-terminated ZB structured CdSe NCs are proposed. Significantly, we discover far greater atomistic complexity of the surface structure and the species distribution in wurtzite as compared to zinc-blende CdSe QDs, despite an apparently identical optical quality of both QD polymorphs.
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spelling pubmed-61610582018-10-01 Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy Piveteau, Laura Ong, Ta-Chung Walder, Brennan J. Dirin, Dmitry N. Moscheni, Daniele Schneider, Barbara Bär, Janine Protesescu, Loredana Masciocchi, Norberto Guagliardi, Antonietta Emsley, Lyndon Copéret, Christophe Kovalenko, Maksym V. ACS Cent Sci [Image: see text] Understanding the surface of semiconductor nanocrystals (NCs) prepared using colloidal methods is a long-standing goal of paramount importance for all their potential optoelectronic applications, which remains unsolved largely because of the lack of site-specific physical techniques. Here, we show that multidimensional (113)Cd dynamic nuclear polarization (DNP) enhanced NMR spectroscopy allows the resolution of signals originating from different atomic and magnetic surroundings in the NC cores and at the surfaces. This enables the determination of the structural perfection, and differentiation between the surface and core atoms in all major forms of size- and shape-engineered CdSe NCs: irregularly faceted quantum dots (QDs) and atomically flat nanoplatelets, including both dominant polymorphs (zinc-blende and wurtzite) and their epitaxial nanoheterostructures (CdSe/CdS core/shell quantum dots and CdSe/CdS core/crown nanoplatelets), as well as magic-sized CdSe clusters. Assignments of the NMR signals to specific crystal facets of oleate-terminated ZB structured CdSe NCs are proposed. Significantly, we discover far greater atomistic complexity of the surface structure and the species distribution in wurtzite as compared to zinc-blende CdSe QDs, despite an apparently identical optical quality of both QD polymorphs. American Chemical Society 2018-06-25 2018-09-26 /pmc/articles/PMC6161058/ /pubmed/30276244 http://dx.doi.org/10.1021/acscentsci.8b00196 Text en Copyright © 2018 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Piveteau, Laura
Ong, Ta-Chung
Walder, Brennan J.
Dirin, Dmitry N.
Moscheni, Daniele
Schneider, Barbara
Bär, Janine
Protesescu, Loredana
Masciocchi, Norberto
Guagliardi, Antonietta
Emsley, Lyndon
Copéret, Christophe
Kovalenko, Maksym V.
Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy
title Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy
title_full Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy
title_fullStr Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy
title_full_unstemmed Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy
title_short Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy
title_sort resolving the core and the surface of cdse quantum dots and nanoplatelets using dynamic nuclear polarization enhanced pass–pieta nmr spectroscopy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6161058/
https://www.ncbi.nlm.nih.gov/pubmed/30276244
http://dx.doi.org/10.1021/acscentsci.8b00196
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