Synthesis of BaZrS3 and BaHfS3 Chalcogenide Perovskite Films Using Single‐Phase Molecular Precursors at Moderate Temperatures

Author:

Pradhan Apurva A.1ORCID,Uible Madeleine C.2ORCID,Agarwal Shubhanshu1ORCID,Turnley Jonathan W.1ORCID,Khandelwal Shriya1ORCID,Peterson Jonas M.2ORCID,Blach Daria D.2ORCID,Swope Ryan N.1ORCID,Huang Libai2ORCID,Bart Suzanne C.2ORCID,Agrawal Rakesh1ORCID

Affiliation:

1. Davidson School of Chemical Engineering Purdue University 480 W. Stadium Ave West Lafayette IN 47907 USA

2. H.C. Brown Laboratory Department of Chemistry Purdue University 560 Oval Dr West Lafayette IN 47907 USA

Abstract

AbstractChalcogenide perovskites have garnered interest for applications in semiconductor devices due to their excellent predicted optoelectronic properties and stability. However, high synthesis temperatures have historically made these materials incompatible with the creation of photovoltaic devices. Here, we demonstrate the solution processed synthesis of luminescent BaZrS3 and BaHfS3 chalcogenide perovskite films using single‐phase molecular precursors at sulfurization temperatures of 575 °C and sulfurization times as short as one hour. These molecular precursor inks were synthesized using known carbon disulfide insertion chemistry to create Group 4 metal dithiocarbamates, and this chemistry was extended to create species, such as barium dithiocarboxylates, that have never been reported before. These findings, with added future research, have the potential to yield fully solution processed thin films of chalcogenide perovskites for various optoelectronic applications.

Funder

National Science Foundation

Publisher

Wiley

Subject

General Medicine

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