Pb deficiency enables the synthesis of CsPbI<sub>3</sub> nanosheets with tunable thickness down to two octahedral layers.

Zheng, Weilin; Chen, Jiangkun; Guo, Yang; Zhang, Xin; Chun, Fengjun; Cao, Yaxin; Gao, Xiaoping; Suo, Hao et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

CsPbX<sub>3</sub> (X = Cl, Br, I) nanosheets have emerged as a promising platform for tuning quantum confinement effects and achieving efficient optoelectronic devices. However, synthesizing uniform CsPbX<sub>3</sub> nanosheets with monolayer-level thicknesses remains a challenge due to the fast reaction kinetics. Herein, we develop a synthetic strategy that leverages Pb-deficient precursors to control reaction kinetics. Our experimental investigations indicate that Pb deficiency in the precursors decelerates the crystal growth, offering enhanced dimensional control in CsPbX<sub>3</sub> systems. This approach enables the synthesis of uniform CsPbI<sub>3</sub> nanosheets with tunable thickness down to two octahedral layers, which exhibit a narrowband emission at 563 nm and high stability against spectral drift. This method is readily extended to CsPbBr<sub>3</sub> and CsPbCl<sub>3</sub> systems for precise size and shape modulation, thus affording full-color emission tuning within mono-halide perovskites. These findings establish a versatile synthetic strategy poised to advance the design and application of CsPbX<sub>3</sub> nanomaterials and other colloidal nanocrystals.