遇见数据集

<b>OpenREACT-CHON-FH</b> — <i>Open Reaction Dataset of Atomic Configurations with Energies, Forces, and Hessians</i>

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DataCite Commons2025-06-01 更新2025-09-08 收录
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<b>RTP Dataset (Reactant–Transition State–Product Dataset):</b>The RTP dataset forms the core training and evaluation set and consists of 35,087 molecular geometries sampled from 11,961 unique elementary reactions. For each reaction, three critical geometries are included: the optimized <b>reactant</b>, <b>transition state (TS)</b>, and <b>product</b>. Each geometry is labeled with its corresponding DFT-computed <b>potential energy</b>, <b>atomic forces</b>, and <b>Hessian matrix</b>. This dataset represents stationary points (critical points) on the potential energy surface and serves as the foundation for training the MLIPs to reproduce energies, gradients, and curvatures.<b>IRC Dataset (Intrinsic Reaction Coordinate Dataset):</b>To assess the <b>extrapolation</b> performance of the trained MLIPs along continuous reaction pathways, a dataset of 34,248 geometries was compiled from <b>600 Intrinsic Reaction Coordinate (IRC) paths</b>, each corresponding to a distinct elementary reaction in the RTP dataset. These geometries were obtained by following the minimum energy path (MEP) from the transition state to both reactant and product wells using quantum chemistry calculations. While these geometries are not explicitly used in training, they provide a rigorous benchmark for evaluating the ability of MLIPs to generalize beyond training data and accurately model transition state connectivity and reaction dynamics.<b>NMS Dataset (Normal Mode Sampling Dataset):</b>To evaluate MLIP robustness on <b>off-equilibrium, perturbed structures</b>, 62,527 geometries were generated via <b>Normal Mode Sampling (NMS)</b>. These structures are derived by displacing intermediate IRC geometries along their vibrational modes with random amplitudes, simulating thermal fluctuations and non-equilibrium distortions. This dataset allows for testing the model's stability and accuracy in more realistic, noisy molecular environments as encountered in molecular dynamics simulations or under experimental conditions.

提供机构:
figshare
创建时间:
2025-05-29
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