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chem-neb-barrier
Calculate activation barrier using Nudged Elastic Band (NEB) method with MLIPs.
Codex または Claude でインストール この Prompt をコピーして Codex、Claude、または他のアシスタントに貼り付けると、Skill ページを確認してインストールできます。
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Calculate activation barrier using Nudged Elastic Band (NEB) method with MLIPs.
Codex または Claude でインストール この Prompt をコピーして Codex、Claude、または他のアシスタントに貼り付けると、Skill ページを確認してインストールできます。
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| name | chem-neb-barrier |
| description | Calculate activation barrier using Nudged Elastic Band (NEB) method with MLIPs. |
| category | ["chemistry","materials"] |
This skill calculates the activation energy barrier for atomic migration or chemical reaction transition states using the Nudged Elastic Band (NEB) method with Machine Learning Interatomic Potentials (MLIPs).
Supports both:
The script auto-detects periodic boundary conditions from the input structures.
calculate_barrier.pyPerforms the NEB calculation between two endpoint structures.
Usage:
# Env: mace-agent
python .agents/skills/chem-neb-barrier/scripts/calculate_barrier.py \
--start_structure <path_to_start.cif> \
--end_structure <path_to_end.cif> \
--model_type mace \
--n_images 5 \
--fmax 0.05 \
--output_dir <output_directory>
# Env: mace-agent
python .agents/skills/chem-neb-barrier/scripts/calculate_barrier.py \
--start_structure reactant.xyz \
--end_structure product.xyz \
--model_type mace \
--model_name MACE-OFF23-small \
--n_images 7 \
--fmax 0.05 \
--output_dir <output_directory>
# Env: fairchem-agent
python .agents/skills/chem-neb-barrier/scripts/calculate_barrier.py \
--start_structure <path_to_start.cif> \
--end_structure <path_to_end.cif> \
--model_type fairchem \
--n_images 5 \
--fmax 0.05 \
--output_dir <output_directory>
# Env: matgl-agent
python .agents/skills/chem-neb-barrier/scripts/calculate_barrier.py \
--start_structure <path_to_start.cif> \
--end_structure <path_to_end.cif> \
--model_type matgl \
--n_images 5 \
--fmax 0.05 \
--output_dir <output_directory>
Arguments:
--start_structure: Path to the initial stable structure (CIF/POSCAR/XYZ).--end_structure: Path to the final stable structure (CIF/POSCAR/XYZ).--model_type: Type of MLIP to use (mace, fairchem, matgl).--model_name: Specific model name/path (optional, uses default if not specified).--model_head: Model head for multi-head models (e.g., omat, omol for UMA; omat_pbe, matpes_r2scan for MACE-MH).--n_images: Number of intermediate images (default: 7).--fmax: Force convergence criterion in eV/Å (default: 0.02).--interpolation: Method for initial path generation. Options: linear, idpp (default). Recommended to use idpp for dense systems.--climb: Use Climbing Image NEB (CI-NEB) (default: True).--output_dir: Directory to save results and plots.Outputs:
neb_trajectory.traj: ASE trajectory of the optimized path.neb_barrier_plot.png: Plot of energy vs reaction coordinate.neb_results.json: JSON file containing barrier energy and forces.neb_path.cif (periodic) or neb_path.xyz (non-periodic): Path structures.Recommended:
MACE-OMAT-0-smallMACE-MH-1 (head: omat_pbe)uma-s-1p1 (head: omat)MACE-MATPES-r2SCAN-0MACE-MH-1 (head: matpes_r2scan)CHGNet-MatPES-r2SCAN-2025.2.10-2.7M-PESTensorNet-MatPES-r2SCAN-v2025.1-PESDiscouraged:
M3GNet-MP-2021, CHGNet-MPtrj-2023.12.1-2.7M-PES)MACE-OFF23-small / MACE-OFF23-medium — trained on organic moleculesuma-s-1p1 (head: omol) — general molecular modelMACE-MH-1 (head: omol) — multi-head molecular modelmcp_config.json).relax_cell=False (fixed volume) to ensure consistency between endpoints.pbc=False is set on the structures.fmax=0.02 eV/Å for tight convergence.relax_structure tool from the corresponding MCP server for this.examples/ directory for sample inputs and outputs.Author: Bowen Deng Contact: GitHub @learningmatter-mit