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Strongly Confined CsPbBr(3) Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices

[Image: see text] The success of the colloidal semiconductor quantum dots (QDs) field is rooted in the precise synthetic control of QD size, shape, and composition, enabling electronically well-defined functional nanomaterials that foster fundamental science and motivate diverse fields of applicatio...

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Autores principales: Boehme, Simon C., Bodnarchuk, Maryna I., Burian, Max, Bertolotti, Federica, Cherniukh, Ihor, Bernasconi, Caterina, Zhu, Chenglian, Erni, Rolf, Amenitsch, Heinz, Naumenko, Denys, Andrusiv, Hordii, Semkiv, Nazar, John, Rohit Abraham, Baldwin, Alan, Galkowski, Krzysztof, Masciocchi, Norberto, Stranks, Samuel D., Rainò, Gabriele, Guagliardi, Antonietta, Kovalenko, Maksym V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9933619/
https://www.ncbi.nlm.nih.gov/pubmed/36719353
http://dx.doi.org/10.1021/acsnano.2c07677
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author Boehme, Simon C.
Bodnarchuk, Maryna I.
Burian, Max
Bertolotti, Federica
Cherniukh, Ihor
Bernasconi, Caterina
Zhu, Chenglian
Erni, Rolf
Amenitsch, Heinz
Naumenko, Denys
Andrusiv, Hordii
Semkiv, Nazar
John, Rohit Abraham
Baldwin, Alan
Galkowski, Krzysztof
Masciocchi, Norberto
Stranks, Samuel D.
Rainò, Gabriele
Guagliardi, Antonietta
Kovalenko, Maksym V.
author_facet Boehme, Simon C.
Bodnarchuk, Maryna I.
Burian, Max
Bertolotti, Federica
Cherniukh, Ihor
Bernasconi, Caterina
Zhu, Chenglian
Erni, Rolf
Amenitsch, Heinz
Naumenko, Denys
Andrusiv, Hordii
Semkiv, Nazar
John, Rohit Abraham
Baldwin, Alan
Galkowski, Krzysztof
Masciocchi, Norberto
Stranks, Samuel D.
Rainò, Gabriele
Guagliardi, Antonietta
Kovalenko, Maksym V.
author_sort Boehme, Simon C.
collection PubMed
description [Image: see text] The success of the colloidal semiconductor quantum dots (QDs) field is rooted in the precise synthetic control of QD size, shape, and composition, enabling electronically well-defined functional nanomaterials that foster fundamental science and motivate diverse fields of applications. While the exploitation of the strong confinement regime has been driving commercial and scientific interest in InP or CdSe QDs, such a regime has still not been thoroughly explored and exploited for lead-halide perovskite QDs, mainly due to a so far insufficient chemical stability and size monodispersity of perovskite QDs smaller than about 7 nm. Here, we demonstrate chemically stable strongly confined 5 nm CsPbBr(3) colloidal QDs via a postsynthetic treatment employing didodecyldimethylammonium bromide ligands. The achieved high size monodispersity (7.5% ± 2.0%) and shape-uniformity enables the self-assembly of QD superlattices with exceptional long-range order, uniform thickness, an unusual rhombic packing with an obtuse angle of 104°, and narrow-band cyan emission. The enhanced chemical stability indicates the promise of strongly confined perovskite QDs for solution-processed single-photon sources, with single QDs showcasing a high single-photon purity of 73% and minimal blinking (78% “on” fraction), both at room temperature.
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spelling pubmed-99336192023-02-17 Strongly Confined CsPbBr(3) Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices Boehme, Simon C. Bodnarchuk, Maryna I. Burian, Max Bertolotti, Federica Cherniukh, Ihor Bernasconi, Caterina Zhu, Chenglian Erni, Rolf Amenitsch, Heinz Naumenko, Denys Andrusiv, Hordii Semkiv, Nazar John, Rohit Abraham Baldwin, Alan Galkowski, Krzysztof Masciocchi, Norberto Stranks, Samuel D. Rainò, Gabriele Guagliardi, Antonietta Kovalenko, Maksym V. ACS Nano [Image: see text] The success of the colloidal semiconductor quantum dots (QDs) field is rooted in the precise synthetic control of QD size, shape, and composition, enabling electronically well-defined functional nanomaterials that foster fundamental science and motivate diverse fields of applications. While the exploitation of the strong confinement regime has been driving commercial and scientific interest in InP or CdSe QDs, such a regime has still not been thoroughly explored and exploited for lead-halide perovskite QDs, mainly due to a so far insufficient chemical stability and size monodispersity of perovskite QDs smaller than about 7 nm. Here, we demonstrate chemically stable strongly confined 5 nm CsPbBr(3) colloidal QDs via a postsynthetic treatment employing didodecyldimethylammonium bromide ligands. The achieved high size monodispersity (7.5% ± 2.0%) and shape-uniformity enables the self-assembly of QD superlattices with exceptional long-range order, uniform thickness, an unusual rhombic packing with an obtuse angle of 104°, and narrow-band cyan emission. The enhanced chemical stability indicates the promise of strongly confined perovskite QDs for solution-processed single-photon sources, with single QDs showcasing a high single-photon purity of 73% and minimal blinking (78% “on” fraction), both at room temperature. American Chemical Society 2023-01-31 /pmc/articles/PMC9933619/ /pubmed/36719353 http://dx.doi.org/10.1021/acsnano.2c07677 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Boehme, Simon C.
Bodnarchuk, Maryna I.
Burian, Max
Bertolotti, Federica
Cherniukh, Ihor
Bernasconi, Caterina
Zhu, Chenglian
Erni, Rolf
Amenitsch, Heinz
Naumenko, Denys
Andrusiv, Hordii
Semkiv, Nazar
John, Rohit Abraham
Baldwin, Alan
Galkowski, Krzysztof
Masciocchi, Norberto
Stranks, Samuel D.
Rainò, Gabriele
Guagliardi, Antonietta
Kovalenko, Maksym V.
Strongly Confined CsPbBr(3) Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices
title Strongly Confined CsPbBr(3) Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices
title_full Strongly Confined CsPbBr(3) Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices
title_fullStr Strongly Confined CsPbBr(3) Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices
title_full_unstemmed Strongly Confined CsPbBr(3) Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices
title_short Strongly Confined CsPbBr(3) Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices
title_sort strongly confined cspbbr(3) quantum dots as quantum emitters and building blocks for rhombic superlattices
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9933619/
https://www.ncbi.nlm.nih.gov/pubmed/36719353
http://dx.doi.org/10.1021/acsnano.2c07677
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