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Graph Diffusion Transformers for Multi-Conditional Molecular Generation

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arxiv 2401.13858 v3 pith:Y7NORVIR submitted 2024-01-24 cs.LG q-bio.BM

classification cs.LGq-bio.BM
keywords graphdiffusionmoleculargenerationmodelsmulti-conditionalnoisecondition
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Inverse molecular design with diffusion models holds great potential for advancements in material and drug discovery. Despite success in unconditional molecular generation, integrating multiple properties such as synthetic score and gas permeability as condition constraints into diffusion models remains unexplored. We present the Graph Diffusion Transformer (Graph DiT) for multi-conditional molecular generation. Graph DiT integrates an encoder to learn numerical and categorical property representations with the Transformer-based denoiser. Unlike previous graph diffusion models that add noise separately on the atoms and bonds in the forward diffusion process, Graph DiT is trained with a novel graph-dependent noise model for accurate estimation of graph-related noise in molecules. We extensively validate Graph DiT for multi-conditional polymer and small molecule generation. Results demonstrate the superiority of Graph DiT across nine metrics from distribution learning to condition control for molecular properties. A polymer inverse design task for gas separation with feedback from domain experts further demonstrates its practical utility.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. FAROS: Fair Graph Generation via Attribute Switching Mechanisms

    cs.LG 2025-07 conditional novelty 6.0 of 10

    FAROS switches sensitive attributes on an optimal fraction of nodes at an optimal diffusion step to produce fairer generated graphs with little accuracy loss.

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