Artificial Photosynthesis Lab

Edri Lab @ Department of Chemical Engineering, BGU

Highly conductive flat grains of cesium lead bromide perovskites via additive engineering with methylammonium bromide

Chandra Shakher Pathak, Deepak Aloysius, Satyajit Gupta, Sabyasachi Mukhopadhyay, Eran Edri

Perovskite solar cells made of inorganic cesium lead bromide (CsPbBr3) display unusually high open-circuit potentials. Yet, their photovoltaic efficiency is still lagging behind that of iodide-based halide perovskites. In this study, a multistep solution spin coating process is used to create a CsPbBr3 film. The CsPbBr3 perovskite film consists of flat and rounded grains, and the photocurrent of each grain type is imbalanced. Interestingly, a significant current increase in flat grains is observed when conducting atomic force microscopy (c-AFM) at the nanoscale after the addition of methyl ammonium bromide (MABr) as an additive. The addition of MABr results in good optoelectronic quality of perovskite films with highly conductive grains and enables better charge transport and hence improved power conversion efficiency.

Publication language English
Pages 2543-2551
Volume 3
Issue number 10
Publication status Published - 26.08.2024

ASJC Scopus subject areas

Renewable Energy, Sustainability and the Environment
Fuel Technology
Energy Engineering and Power Technology
Energy (miscellaneous)

Sustainable Development Goals

SDG 7 - Affordable and Clean Energy
Access to Document
10.1039/d4ya00487f
Other files and links
Link to publication in Scopus