Halide Perovskite-Chalcohalide Nanocrystal Heterostructures as a Platform for the Synthesis and Investigation of the CsPbCl3-CsPbI3 Epitaxial Interface
Nikolaos Livakas, Irina Skvortsova, Juliette Zito, Yurii P. Ivanov, Aswin Asaithambi, Andrea Toma, Annick De Backer, Muhammad Imran, Sandra Van Aert, Giorgio Divitini, Ivan Infante, Sara Bals, Liberato Manna

TL;DR
This study explores the synthesis and properties of heterostructures combining halide perovskites and chalcohalides, revealing how interfaces influence halide exchange, strain accommodation, and photophysical behavior in these novel materials.
Contribution
It introduces a new heterostructure platform with controlled interfaces to study halide exchange and strain effects in perovskite-chalcohalide systems, advancing material design.
Findings
Epitaxial interfaces influence halide exchange pathways.
Partial iodide alloying occurs at interfaces.
Type-I band alignment facilitates carrier transfer.
Abstract
Halide exchange in lead-based halide perovskites has been studied extensively. While mixed Cl-Br or Br-I alloy compositions can be formed with no miscibility gaps, this is precluded for mixed Cl-I compositions, due to the large difference in Cl and I ionic radii. Here, we exploit perovskite-chalcohalide CsPbCl3-Pb4S3Cl2 heterostructures to study the Cl-I exchange and isolate new types of intermediate structures. The epitaxial interface between the Pb4S3Cl2 chalcohalide and the CsPbCl3 perovskite domain significantly influences the intermediate stages of halide exchange in the perovskite domain, leading to coexisting CsPbCl3 and CsPbI3 domains, thereby delivering segmented CsPbI3-CsPbCl3-Pb4S3Cl2 energetically favorable heterostructures, with partial iodide alloying of the CsPbCl3 domain and at the perovskite-chalcohalide interface. The I:CsPbCl3 domain between CsPbI3 and Pb4S3Cl2…
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Taxonomy
TopicsPerovskite Materials and Applications · Inorganic Chemistry and Materials · Machine Learning in Materials Science
