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Cathalide

Contributors: Yongjin Shin (Dankook University), Hyemin Kim (Seoul National University)

Cathalide intends to modulate organic molecules in perovskite structures. Unlike inorganic materials, organic molecules are often considered as coarse grain. But conventional DFT codes cannot group atoms to form a group, which makes the operation of translation and rotation difficult.

This uses a modified version of pymatgen functions. Currently, only VASP (POSCAR) is the allowed file format, but Quantum Espresso will soon be implemented.

Features to be implemented:

  1. Assigning reference points more effectively. For example, if I have xyz file of molecule, it is hard to align to certain direction in the cell.
  2. Modifying the molecular structures. For C-C chains, a user might want to rotate the specific parts of molecules.
  3. Prepare high-symmetry molecules. For example, MA (H3C-NH3) can be prepared with exact three-fold rotation symmetry.
  4. Preparation of perovskite matrix with different distortion patterns.
  5. Use lattice vectors or dedicated

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Manipulate cations (especially organic molecules) in hybrid halide perovskites

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