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The classification of 1D `perovskites'
Walter P D Wong1, John V Hanna2, Andrew C Grimsdale1
1School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.
A new notation classifies 1D perovskite structures by their octahedral connectivity. This system simplifies understanding the diverse configurations of these hybrid materials.
Area of Science:
- Materials Science
- Crystallography
- Solid-State Chemistry
Background:
- Hybrid perovskites are of significant research interest, with frequent reports of new structures.
- Classification of 3D and 2D perovskites is straightforward due to dimensional constraints.
- 1D perovskites exhibit numerous structural configurations due to increased degrees of freedom.
Purpose of the Study:
- To propose a new, standardized notation for classifying 1D perovskite structures.
- To base the classification on the connectivity patterns of perovskite octahedra.
- To provide a clear framework for understanding the structural diversity in 1D perovskites.
Main Methods:
- Developing a notation system based on the periodic connectivity of octahedra.
- Analyzing the structural configurations of simple 1D perovskites and haloplumbate structures.
- Evaluating the applicability and limitations of the proposed notation.
Main Results:
- A novel notation system for 1D perovskite structures has been established.
- The notation effectively classifies structures based on octahedral connectivity.
- The system is most suitable for simple 1D perovskites and haloplumbates.
Conclusions:
- The proposed notation offers a systematic approach to classifying complex 1D perovskite structures.
- This classification aids in understanding the structural diversity and relationships within this material class.
- The notation's applicability is currently limited to simpler frameworks to avoid excessive complexity.
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