Geometric Crystallography Course
This course teaches geometric crystallography for oxide electrolytes. Participants learn to interpret CIF files, analyze symmetry elements, map ion diffusion pathways, and design doped or vacancy-rich structures to enhance ionic conductivity in batteries and solid-state chemistry. It covers unit cells, space groups, Wyckoff positions, and practical applications with oxide databases and prototypes, enabling confident structure modifications.

4 to 360h flexible workload
certificate valid in your country
What will I learn?
Gain practical tools to interpret, analyze, and design oxide structures for efficient ion transport. Master unit cells, space groups, Wyckoff positions, and symmetry operations, then apply them to CIF files, oxide databases, and prototypes. Develop skills to map diffusion pathways, identify bottlenecks, select dopants, and propose precise structural changes.
Elevify advantages
Develop skills
- Decode space groups by reading CIF files and assigning crystal systems for oxide electrolytes.
- Analyze Wyckoff sites to map cation positions, symmetry, and ionic pathways quickly.
- Quantify coordination numbers, polyhedral distortion, and bottleneck sizes accurately.
- Design doped structures by selecting substitutions, vacancies, and symmetry adjustments for ions.
- Map diffusion networks by locating channels, bottlenecks, and 3D pathways from geometry.
Suggested summary
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