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Updated: Apr 22, 2026

Facile Synthesis of Colloidal Lead Halide Perovskite Nanoplatelets via Ligand-Assisted Reprecipitation
Published on: October 1, 2019
Polymer-templated mesoscale assembly directs synthesis of centimetre-scale perovskite single crystals
Jingyi Sun1, Xinyi Shao1, Wei Fan1,2
1State Key Laboratory of Silicon and Advanced Semiconductor Materials and School of Materials Science and Engineering, Zhejiang University, Hangzhou, China.
Abstract:
The synthesis of high-quality single crystals is essential for revealing intrinsic structure-property relationships, as they provide an ideal model system free from grain boundaries and other extrinsic defects, enabling precise studies of electronic, optical, and charge-transport properties. In metal halide perovskites, an emerging family of semiconductors that have rapidly become a focal point of optoelectronic materials research, single crystal studies provide direct access to intrinsic processes such as defect formation, ion migration, and interfacial behavior. However, producing large, high-quality perovskite single crystals remains challenging because their multicomponent precursor solutions sustain dynamic solvation and coordination equilibria. The coexistence of fast ion dynamics and unstable coordination often drives uncontrolled multi-nucleation and disordered aggregation, making the nucleation stage a critical determinant of final crystal quality. Here, we introduce a general nucleation-control framework that regulates transient precursor species into mesoscale clusters via reversible, non-covalent interactions. Such weak and dynamic interactions provide soft confinement at the pre-nucleation stage, suppress random aggregation, promote selective nucleation, and permit ordered lattice formation without permanent additive incorporation. Implemented through a polymer-templated strategy, the approach enables the formation of centimetre-scale perovskite single crystals within hours and is broadly applicable across various perovskite compositions, demonstrating its universality.
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