Electronic and microstructure properties of all-small-molecule organic solar cells

SPIE, the international society for optics and photonics (2022) 31-31

Authors:

Pascal Kaienburg, Andreas Lauritzen, Irfan Habib, Olivia Gough, Subhrangsu Mukherjee, Harald Ade, Moritz Riede

The crystal packing of non-fullerene acceptors in organic solar cells

SPIE, the international society for optics and photonics (2022) 27-27

Authors:

Pierluigi Mondelli, Pascal Kaienburg, Francesco Silvestri, Eduardo Solano, Esther Barrena, Moritz Riede, Graham Morse

Suppressing Nickel Oxide/Perovskite Interface Redox Reaction and Defects for Highly Performed and Stable Inverted Perovskite Solar Cells.

Small methods 6:10 (2022) e2200787

Authors:

Sajjad Ahmad, Ruiman Ma, Jiawei Zheng, Cheuk Kai Gary Kwok, Qisen Zhou, Zhenwei Ren, Jinwook Kim, Xinjun He, Xiaoliang Zhang, Kin Man Yu, Wallace CH Choy

Abstract:

The inorganic hole transport layer of nickel oxide (NiOx ) has shown highly efficient, low-cost, and scalable in perovskite photovoltaics. However, redox reactions at the interface between NiOx and perovskites limit their commercialization. In this study, ABABr (4-(2-Aminoethyl) benzoic acid bromide) between the NiOx and different perovskite layers to address the issues has been introduced. How the ABABr interacts with NiOx and perovskites is experimentally and theoretically investigated. These results show that the ABABr molecule chemically reacts with the NiOx via electrostatic attraction on one side, whereas on the other side, it forms a strong hydrogen bond via the NH3 + group with perovskites layers, thus directly diminishing the redox reaction between the NiOx and perovskites layers and passivating the layer surfaces. Additionally, the ABABr interface modification leads to significant improvements in perovskite film morphology, crystallization, and band alignment. The perovskites solar cells (PSCs) based on an ABABr interface modification show power conversion efficiency (PCE) improvement by over 13% and maintain over 90% of its PCE after continuous operation at maximum power point for over 500 h. The work not only contributes to the development of novel interlayers for stable PSCs but also to the understanding of how to prevent interface redox reactions.

All-Small-Molecule Organic Solar Cells – Performance, Electronic & Microstructure Properties

Fundacio Scito (2022)

Authors:

Pascal Kaienburg, Moritz Riede

All-small-molecule organic solar cells – performance, electronic & microstructure properties

Proceedings of Materials for Sustainable Development Conference (MAT-SUS) (NFM22) Fundacio Scito (2022)

Authors:

Pascal Kaienburg, Moritz Riede