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Otero‐Martínez C, García‐Lojo D, Pastoriza‐Santos I, Pérez‐Juste J, Polavarapu L. Dimensionality Control of Inorganic and Hybrid Perovskite Nanocrystals by Reaction Temperature: From No‐Confinement to 3D and 1D Quantum Confinement. Angew Chem Int Ed Engl 2021. [DOI: 10.1002/ange.202109308] [Citation(s) in RCA: 4] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/07/2022]
Affiliation(s)
- Clara Otero‐Martínez
- Department of Physical Chemistry CINBIO Universidade de Vigo, Materials Chemistry and Physics Group Campus Universitario As Lagoas, Marcosende 36310 Vigo Spain
- Department of Physical Chemistry CINBIO Universidade de Vigo Campus Universitario As Lagoas, Marcosende 36310 Vigo Spain
| | - Daniel García‐Lojo
- Department of Physical Chemistry CINBIO Universidade de Vigo Campus Universitario As Lagoas, Marcosende 36310 Vigo Spain
- Galicia Sur Health Research Institute (IIS Galicia Sur) SERGAS-UVIGO Vigo Spain
| | - Isabel Pastoriza‐Santos
- Department of Physical Chemistry CINBIO Universidade de Vigo Campus Universitario As Lagoas, Marcosende 36310 Vigo Spain
- Galicia Sur Health Research Institute (IIS Galicia Sur) SERGAS-UVIGO Vigo Spain
| | - Jorge Pérez‐Juste
- Department of Physical Chemistry CINBIO Universidade de Vigo Campus Universitario As Lagoas, Marcosende 36310 Vigo Spain
- Galicia Sur Health Research Institute (IIS Galicia Sur) SERGAS-UVIGO Vigo Spain
| | - Lakshminarayana Polavarapu
- Department of Physical Chemistry CINBIO Universidade de Vigo, Materials Chemistry and Physics Group Campus Universitario As Lagoas, Marcosende 36310 Vigo Spain
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Otero-Martínez C, García-Lojo D, Pastoriza-Santos I, Pérez-Juste J, Polavarapu L. Dimensionality Control of Inorganic and Hybrid Perovskite Nanocrystals by Reaction Temperature: From No-Confinement to 3D and 1D Quantum Confinement. Angew Chem Int Ed Engl 2021; 60:26677-26684. [PMID: 34606151 PMCID: PMC9299153 DOI: 10.1002/anie.202109308] [Citation(s) in RCA: 31] [Impact Index Per Article: 10.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/13/2021] [Indexed: 02/05/2023]
Abstract
This work focuses on the systematic investigation of the shape, size, and composition‐controlled synthesis of perovskite nanocrystals (NCs) under inert gas‐free conditions and using pre‐synthesized precursor stock solutions. In the case of CsPbBr3 NCs, we find that the lowering of reaction temperature from ∼175 to 100 °C initially leads to a change of morphology from bulk‐like 3D nanocubes to 0D nanocubes with 3D‐quantum confinement, while at temperatures below 100 °C the reaction yields 2D nanoplatelets (NPls) with 1D‐quantum confinement. However, to our surprise, at higher temperatures (∼215 °C), the reaction yields CsPbBr3 hexapod NCs, which have been rarely reported. The synthesis is scalable, and their halide composition is tunable by simply using different combinations of precursor solutions. The versatility of the synthesis is demonstrated by applying it to relatively less explored shape‐controlled synthesis of FAPbBr3 NCs. Despite the synthesis carried out in the air, both the inorganic and hybrid perovskite NCs exhibit nearly‐narrow emission without applying any size‐selective separation, and it is precisely tunable by controlling the reaction temperature.
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Affiliation(s)
- Clara Otero-Martínez
- Department of Physical Chemistry, CINBIO, Universidade de Vigo, Materials Chemistry and Physics Group, Campus Universitario As Lagoas, Marcosende, 36310, Vigo, Spain.,Department of Physical Chemistry, CINBIO, Universidade de Vigo, Campus Universitario As Lagoas, Marcosende, 36310, Vigo, Spain
| | - Daniel García-Lojo
- Department of Physical Chemistry, CINBIO, Universidade de Vigo, Campus Universitario As Lagoas, Marcosende, 36310, Vigo, Spain.,Galicia Sur Health Research Institute (IIS Galicia Sur), SERGAS-UVIGO, Vigo, Spain
| | - Isabel Pastoriza-Santos
- Department of Physical Chemistry, CINBIO, Universidade de Vigo, Campus Universitario As Lagoas, Marcosende, 36310, Vigo, Spain.,Galicia Sur Health Research Institute (IIS Galicia Sur), SERGAS-UVIGO, Vigo, Spain
| | - Jorge Pérez-Juste
- Department of Physical Chemistry, CINBIO, Universidade de Vigo, Campus Universitario As Lagoas, Marcosende, 36310, Vigo, Spain.,Galicia Sur Health Research Institute (IIS Galicia Sur), SERGAS-UVIGO, Vigo, Spain
| | - Lakshminarayana Polavarapu
- Department of Physical Chemistry, CINBIO, Universidade de Vigo, Materials Chemistry and Physics Group, Campus Universitario As Lagoas, Marcosende, 36310, Vigo, Spain
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Paul S, Bladt E, Richter AF, Döblinger M, Tong Y, Huang H, Dey A, Bals S, Debnath T, Polavarapu L, Feldmann J. Mangan‐Dotierung von Perowskit‐Nanokristallen: Quanteneinschränkung Aufgrund von Ruddlesden‐Popper‐Defekten. Angew Chem Int Ed Engl 2020. [DOI: 10.1002/ange.201914473] [Citation(s) in RCA: 6] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/07/2022]
Affiliation(s)
- Sharmistha Paul
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU) Königinstr. 10 80539 München Deutschland
| | - Eva Bladt
- EMATUniversity of Antwerp Groenenborgerlaan 171 2020 Antwerpen Belgien
| | - Alexander F. Richter
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU) Königinstr. 10 80539 München Deutschland
| | - Markus Döblinger
- Department of ChemistryLudwig-Maximilians-Universität (LMU) Butenandtstr. 5–13 (E) 81377 München Deutschland
| | - Yu Tong
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU) Königinstr. 10 80539 München Deutschland
| | - He Huang
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU) Königinstr. 10 80539 München Deutschland
| | - Amrita Dey
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU) Königinstr. 10 80539 München Deutschland
| | - Sara Bals
- EMATUniversity of Antwerp Groenenborgerlaan 171 2020 Antwerpen Belgien
| | - Tushar Debnath
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU) Königinstr. 10 80539 München Deutschland
| | - Lakshminarayana Polavarapu
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU) Königinstr. 10 80539 München Deutschland
| | - Jochen Feldmann
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU) Königinstr. 10 80539 München Deutschland
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Paul S, Bladt E, Richter AF, Döblinger M, Tong Y, Huang H, Dey A, Bals S, Debnath T, Polavarapu L, Feldmann J. Manganese-Doping-Induced Quantum Confinement within Host Perovskite Nanocrystals through Ruddlesden-Popper Defects. Angew Chem Int Ed Engl 2020; 59:6794-6799. [PMID: 32003102 PMCID: PMC7186832 DOI: 10.1002/anie.201914473] [Citation(s) in RCA: 42] [Impact Index Per Article: 10.5] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/12/2019] [Revised: 01/12/2020] [Indexed: 12/24/2022]
Abstract
The concept of doping Mn2+ ions into II-VI semiconductor nanocrystals (NCs) was recently extended to perovskite NCs. To date, most studies on Mn2+ doped NCs focus on enhancing the emission related to the Mn2+ dopant via an energy transfer mechanism. Herein, we found that the doping of Mn2+ ions into CsPbCl3 NCs not only results in a Mn2+ -related orange emission, but also strongly influences the excitonic properties of the host NCs. We observe for the first time that Mn2+ doping leads to the formation of Ruddlesden-Popper (R.P.) defects and thus induces quantum confinement within the host NCs. We find that a slight doping with Mn2+ ions improves the size distribution of the NCs, which results in a prominent excitonic peak. However, with increasing the Mn2+ concentration, the number of R.P. planes increases leading to smaller single-crystal domains. The thus enhanced confinement and crystal inhomogeneity cause a gradual blue shift and broadening of the excitonic transition, respectively.
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Affiliation(s)
- Sharmistha Paul
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU)Königinstrasse 1080539MunichGermany
| | - Eva Bladt
- EMATUniversity of AntwerpGroenenborgerlaan 1712020AntwerpBelgium
| | - Alexander F. Richter
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU)Königinstrasse 1080539MunichGermany
| | - Markus Döblinger
- Department of ChemistryLudwig-Maximilians-Universität MünchenButenandtstrasse 5–13 (E)81377MunichGermany
| | - Yu Tong
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU)Königinstrasse 1080539MunichGermany
| | - He Huang
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU)Königinstrasse 1080539MunichGermany
| | - Amrita Dey
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU)Königinstrasse 1080539MunichGermany
| | - Sara Bals
- EMATUniversity of AntwerpGroenenborgerlaan 1712020AntwerpBelgium
| | - Tushar Debnath
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU)Königinstrasse 1080539MunichGermany
| | - Lakshminarayana Polavarapu
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU)Königinstrasse 1080539MunichGermany
| | - Jochen Feldmann
- Chair for Photonics and OptoelectronicsNano-Institute MunichDepartment of PhysicsLudwig-Maximilians-Universität (LMU)Königinstrasse 1080539MunichGermany
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