Adv. Mater.: Atomically unraveling the structural evolution of surfaces and interfaces in metal halide perovskite quantum dots

time:2023-07-05Hits:230设置

Title:

Atomically unraveling the structural evolution of surfaces and interfaces in metal halide perovskite quantum dots

Authors:

Mengmeng Ma1,2#, Xuliang Zhang1,2#, Liang Xu1,2#, Xiao Chen3, Lei Wang1,2, Tao Cheng1,2, Fei Wei3, Jianyu Yuan1,2*, Boyuan Shen1,2*

Institutions:

1Institute of Functional Nano & Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices Soochow University, Suzhou, 215123, Jiangsu, PR China.

2Jiangsu Key Laboratory of Advanced Negative Carbon Technologies, Soochow University, Suzhou, 215123, Jiangsu, PR China

3Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology, Department of Chemical Engineering, Tsinghua University, Beijing, 100084, PR China.

Abstract:

Revealing the local structural change of metal halide perovskites (MHPs) induced by external conditions is important to understand its performance and stability in optoelectronic applications. However, previous studies on the properties and structures of MHPs are usually limited by the spatial resolution of the probe, and it is still challenging to obtain its atomic structural information in real space. In this work, the integrated differential-phase-contrast scanning transmission electron microscopy is applied to the low-dose imaging of CsPbI3 quantum dots (QDs). In particular, the local structures in QDs, such as surfaces and interfaces, can be atomically resolved. Then, the structural evolution of CsPbI3 QDs under various external conditions can be unraveled during in situ heating or ex situ treatments, where it lose cubic shapes and fuse to larger particles. The changes in surfaces and interfaces with missing Cs ions and PbI6 octahedrons can be semi-quantitatively studied by profile analysis and bond-length measurement in images. Finally, density functional theory calculations are performed to illustrate the properties and stabilities of the different structures that are observed. These results provide atomic-scale insights into the structural evolution of QDs, which is of great importance to modify the performance of perovskite materials and devices.

IF:

32.086

Link:

https://doi.org/10.1002/adma.202300653



Editor: Guo Jia


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