English

ProvMind: Provenance-grounded reasoning for materials synthesis

Artificial Intelligence 2026-05-28 v1 Machine Learning

Abstract

Materials process optimization requires reasoning over routes, conditions, tools and causal dependencies, yet most computational formulations flatten synthesis procedures into text or ordered steps. We introduce MatProcBench, a provenance-grounded benchmark constructed from literature-mined MatPROV graphs, to evaluate seven process-reasoning tasks spanning route continuity, step-level variable inference and global causal consistency under both same-split and shift-aware evaluation, including a strict dual-OOD split that combines temporal and material-class shift. We further introduce ProvMind, a process-memory reasoning framework that retrieves analogous training processes, converts them into provenance-aware option-level compatibility scores, and uses a language model for constrained final decision making. ProvMind achieves 52.84\% accuracy on the dual-OOD split, outperforming prompting, retrieval-augmented and supervised fine-tuning baselines.

Keywords

Cite

@article{arxiv.2605.28487,
  title  = {ProvMind: Provenance-grounded reasoning for materials synthesis},
  author = {Yiming Zhang and Ryo Tamura and Koji Tsuda},
  journal= {arXiv preprint arXiv:2605.28487},
  year   = {2026}
}
R2 v1 2026-07-22T07:37:14.128Z