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Data underlying the publication: Graph theory-based exploration of structure and dynamics of surface organometallic catalysis.

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DataCite Commons2025-11-04 更新2025-11-15 收录
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The research aims to investigate the structural dynamics and configurational diversity of surface organometallic catalysts, focusing on how local strain in amorphous silica supports influences active-site stability and reactivity. It is a <strong>computational and methodological study</strong> that integrates <strong>ab initio molecular dynamics </strong>simulations with <strong>graph theory–based analysis</strong> to explore and characterize the ensemble of active-site configurations in catalytic systems. The <strong>data were collected through r</strong>eactive molecular dynamics trajectories generated using the CP2K software and analyzed via the GaTewAY graph-theory framework to identify unique isomers and their interconversions. The resulting <strong>data are numerical and structural</strong>, comprising molecular trajectories, energy values, and graph representations of atomic connectivity, which collectively describe the dynamic behavior and transformation pathways of supported organometallic catalysts.
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4TU.ResearchData
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2025-11-04
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