Cellulose‐Assisted Formation of 2D Hybrid Halide Perovskite Nanocrystals with Enhanced Stability for Light‐Emitting Devices

Author:

Ramos‐Terrón Susana1,Spitzer Lea23,Martín Cristina4,Solano Eduardo5,Hermida‐Merino Daniel6,Lecommandoux Sébastien2,Jérôme François3,Cramail Henri2,Argudo Pablo G.2,de Miguel Gustavo1ORCID

Affiliation:

1. Departamento de Química Física y Termodinámica Aplicada Instituto Químico para la Energía y el Medioambiente (IQUEMA) Universidad de Córdoba Campus de Rabanales Edificio Marie Curie Córdoba E‐14071 Spain

2. Université de Bordeaux CNRS Bordeaux INP LCPO UMR 5629 Pessac F‐33600 France

3. Institut de Chimie des Milieux et Matériaux de Poitiers CNRS Université de Poitiers 1 rue Marcel Doré, cedex 9 Poitiers 86073 France

4. Department of Physical Chemistry Faculty of Pharmacy University of Castilla‐La Mancha Albacete 02071 Spain

5. NCD‐SWEET Beamline ALBA Synchrotron Light Source Cerdanyola del Vallès Barcelona 08290 Spain

6. CINBIO Departamento de Física Aplicada Universidade de Vigo Campus Lagoas‐Marcosende Vigo 36310 Spain

Abstract

AbstractA common approach to enhance the stability of metal halide perovskites (MHPs) implemented in optical and optoelectronic devices is to incorporate polymer additives into the perovskite layer. A β‐(1,4) cellulose oligosaccharide (COS) synthesized by mechanocatalytic depolymerization of cellulose has been incorporated to films of the BA2MA4Pb5I16 (BA = n‐butylammonium and MA = methylammonium) two‐dimensional (2D) Ruddlesden‐Popper (RP) hybrid perovskite. Scanning Electron Microscopy (SEM) images displayed a three‐fold reduction of the 2D RP perovskite grains (≈30–40 nm), close to the quantum confinement scale. The analysis of the dark J–V curves of single carrier devices by using the space charge limited current (SCLC) method resulted in a rise of the defect concentration. A notable 14‐fold increase in the photoluminescence (PL) signal at high COS content is detected. Moreover, the analysis of the temperature dependence PL measurements (80–300 K) resulted in a larger exciton binding energy, Eb = 180 to 370 meV, at high COS content. Light emitting diodes of the 2D RP perovskites (PeLEDs) are fabricated w/o the COS compound. The stability test performed under operation (5 V) displays 20 times higher operational lifetimes at high COS content while the luminance is also increased in the devices with the COS compound.

Funder

Junta de Comunidades de Castilla-La Mancha

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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