Ultrahigh Piezoelectric Strains in PbZr1−xTixO3 Single Crystals with Controlled Ti Content Close to the Tricritical Point

Materials MDPI 15:19 (2022) 6708

Authors:

Iwona Lazar, Roger William Whatmore, Andrzej Majchrowski, Anthony Mike Glazer, Dariusz Kajewski, Janusz Koperski, Andrzej Soszyński, Julita Piecha, Barbara Loska, Krystian Roleder

Outstanding Reviewers for Energy & Environmental Science in 2021

Royal Society of Chemistry (RSC) 15:8 (2022) 3113-3113

Combining Spatial and Temporal Resolution in Cryo-TEM of Device Materials

Microscopy and Microanalysis Oxford University Press (OUP) 28:S1 (2022) 2162-2163

Authors:

Nikita S Dutta, Nakita K Noel, Craig B Arnold, Katherine Jungjohann, Mowafak Al-Jassim

Monoclinic domain populations and enhancement of piezoelectric properties in a PZT single crystal at the morphotropic phase boundary

Physical Review B American Physical Society (APS) 105:14 (2022) 144104

Authors:

Krystian Roleder, Andrzej Majchrowski, Iwona Lazar, Roger W Whatmore, A Mike Glazer, Dariusz Kajewski, Janusz Koperski, Andrzej Soszyński

Improved charge balance in green perovskite light-emitting diodes with atomic layer-deposited Al2O3

ACS Applied Materials and Interfaces American Chemical Society 14:30 (2022) 34247-34252

Authors:

William B Gunnarsson, Zhaojian Xu, Nakita K Noel, Barry P Rand

Abstract:

Perovskite light-emitting diodes (LEDs) have experienced a rapid increase in efficiency over the last several years and are now regarded as promising low-cost devices for displays and communication systems. However, it is often challenging to employ ZnO, a well-studied electron transport material, in perovskite LEDs due to chemical instability at the ZnO/perovskite interface and charge injection imbalance caused by the relatively high conductivity of ZnO. In this work, we address these problems by depositing an ultrathin Al<sub>2</sub>O<sub>3</sub> interlayer at the ZnO/perovskite interface, allowing the fabrication of green-emitting perovskite LEDs with a maximum luminance of 21 815 cd/m<sup>2</sup>. Using atomic layer deposition, we can precisely control the Al<sub>2</sub>O<sub>3</sub> thickness and thus fine-tune the electron injection from ZnO, allowing us to enhance the efficiency and operational stability of our LEDs.