The Role of Alkylammonium Bromides on the Surface Passivation of Stable Alcohol‐Dispersed CsPbX3 Nanocrystals and on the Stability Enhancement in Light‐Emitting Applications

Author:

Uribe‐Vegas Pablo1,Villanueva‐Antolí Alexis2,Segura Camilo13ORCID,Werlinger Francisca14,Aliaga Karen R.4,Caprile Renato4,Trofymchuk Oleksandra S.4ORCID,Flores Mario E.1ORCID,Osorio‐Román Igor O.1ORCID,Echeverría‐Arrondo Carlos2ORCID,Adhikari Samrat Das2ORCID,Selmi Olfa2,Seró Iván Mora2ORCID,Rodriguez‐Pereira Jhonatan56ORCID,Pradhan Bapi7ORCID,Paulus Michael8,Sternemann Christian8ORCID,Hofkens Johan7ORCID,Martinez Javier1ORCID,Masi Sofia2ORCID,Gualdrón‐Reyes Andrés F.12ORCID

Affiliation:

1. Facultad de Ciencias Instituto de Ciencias Químicas Universidad Austral de Chile Isla Teja Valdivia 5090000 Chile

2. Institute of Advanced Materials (INAM) Universitat Jaume I (UJI) Avenida de Vicent Sos Baynat, s/n Castelló de la Plana Castellón 12071 Spain

3. Departamento de Química Facultad de Ciencias Universidad de Chile, Las Palmeras Región Metropolitana Ñuñoa 3425 Chile

4. Facultad de Ciencias Químicas y Farmacéuticas Departamento de Química Orgánica y Fisicoquímica Universidad de Chile Santiago 8380492 Chile

5. Center of Materials and Nanotechnologies Faculty of Chemical Technology University of Pardubice Nam. Cs. Legii 565 Pardubice 53002 Czech Republic

6. Central European Institute of Technology Brno University of Technology Purkynova 123 Brno 61200 Czech Republic

7. Department of Chemistry KU Leuven Heverlee 3001 Belgium

8. Fakultät Physik/DELTA Technische Universität Dortmund 44221 Dortmund Germany

Abstract

AbstractThe ligand passivation is considered an attractive strategy to prepare high‐quality perovskite nanocrystals (PNCs) with improved photophysical features in polar media. However, the long‐term stabilization of PNCs in these environments is still challenging, being pivotal to understanding the protection mechanism given by prominent surface ligands and avoiding material deterioration in polar solvents. In this work, how the nature of diverse alkylammonium bromides used during surface passivation influences the photophysical properties and quality of CsPbX3 PNCs fully dispersed in alcohol environments, exhibiting stability up to 10 months are investigated. By adding didodecyldimethylammonium benzyldodecyldimethylammonium and tetrabutylammonium bromides (DDAB, BDAB, and TBAB, respectively), DDAB and BDAB promote a suitable and partial surface coverage are observed, respectively, suppressing defect sites in the nanocrystals. Conversely, TBAB shows poor surface protection, decreasing the PL features of PNCs. The presence of DDAB and BDAB favors the fabrication of color converters, and efficient light‐emitting diodes (LEDs) with external quantum efficiencies (EQE) of ≈23%. Interestingly, significant device stability with BDAB capping shows an LED half‐life of 20‐fold longer than for DDAB. This contribution offers a promising approach for preparing highly luminescent and stable alcohol‐dispersed PNCs, useful for fabricating efficient optoelectronic devices.

Funder

Ministerio de Ciencia e Innovación

Generalitat Valenciana

Agencia Nacional de Investigación y Desarrollo

Publisher

Wiley

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