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Physics-grounded materials AI for reliable materials discovery

09.29.26 | Advanced Institute for Materials Research (AIMR), Tohoku University

Artificial intelligence (AI) is increasingly being used to discover new materials, but conventional data-driven approaches can struggle to explain their predictions, work reliably beyond their training data, and remain consistent with physical laws. A new Perspective proposes a framework called Physics-Grounded Materials AI (PhysMat AI), which integrates fundamental physical knowledge into the materials discovery process.

"Materials discovery cannot rely on correlations in data alone," says Hao Li, Distinguished Professor at the Advanced Institute for Materials Research (WPI-AIMR) at Tohoku University. "By incorporating physical principles into AI, we can make its predictions more interpretable, testable and meaningful from a materials science perspective."

The behavior of materials is governed by factors including thermodynamics, kinetics, electronic structure, transport processes and operating environments. The researchers argue that incorporating this knowledge into AI systems can help move materials discovery beyond correlation-based prediction toward reasoning based on physical principles.

The framework organizes physical knowledge into five complementary roles: prior knowledge, descriptors, constraints, verifiers and infrastructure. These roles can guide how materials data are represented, how AI models reason about potential materials and how their predictions are evaluated against physical principles.

The Perspective presents examples from catalysis, solid-state electrolytes for solid-state batteries and hydrogen-storage materials. In these areas, physical principles can help define meaningful search spaces, evaluate predicted materials and connect AI-generated predictions with mechanisms that can be tested experimentally.

The researchers also discuss how AI agents could combine these physics-aware components with scientific databases, simulations and experimental data. Such systems could help formulate hypotheses, select appropriate scientific tools and assess whether proposed materials are physically feasible.

The researchers propose a development pathway from physics-aware AI, which incorporates physical knowledge into AI systems, to physics-reasoning AI, which can use that knowledge during scientific reasoning, and eventually physics-autonomous AI, which could integrate physical reasoning, simulations and experiments in a continuous discovery process.

The framework provides a way to connect AI-based prediction with established principles of materials science. Further development could support materials discovery for energy technologies, including catalysts, solid-state batteries and hydrogen-storage materials, while helping make AI-generated predictions more interpretable and experimentally testable.

About the World Premier International Research Center Initiative (WPI)

The WPI program was launched in 2007 by Japan's Ministry of Education, Culture, Sports, Science and Technology (MEXT) to foster globally visible research centers boasting the highest standards and outstanding research environments. Numbering more than a dozen and operating at institutions throughout the country, these centers are given a high degree of autonomy, allowing them to engage in innovative modes of management and research. The program is administered by the Japan Society for the Promotion of Science (JSPS).

See the latest research news from the centers at the WPI News Portal: https://www.eurekalert.org/newsportal/WPI
Main WPI program site: www.jsps.go.jp/english/e-toplevel

Advanced Institute for Materials Research (AIMR) Tohoku University

Establish a World-Leading Research Center for Materials Science

AIMR aims to contribute to society through actions as a world-leading research center for materials science and continuous challenges to research frontiers. To this end, the institute gathers excellent researchers in the fields of physics, chemistry, materials science, engineering, and mathematics and provides world-class research environment.

AIMR site: https://www.wpi-aimr.tohoku.ac.jp/en/

Advanced Functional Materials

10.1002/adfm.78119

Physics-Grounded Materials Artificial Intelligence for Reliable Materials Discovery

3-Sep-2026

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Tohoku University
public_relations@grp.tohoku.ac.jp

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This article is based on a news release from Advanced Institute for Materials Research (AIMR), Tohoku University. BrightSurf curates and republishes science news from research institutions worldwide; the original release is linked below.

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APA:
Advanced Institute for Materials Research (AIMR), Tohoku University. (2026, September 29). Physics-grounded materials AI for reliable materials discovery. Brightsurf News. https://www.brightsurf.com/news/8OMX3VQ1/physics-grounded-materials-ai-for-reliable-materials-discovery.html
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"Physics-grounded materials AI for reliable materials discovery." Brightsurf News, Sep. 29 2026, https://www.brightsurf.com/news/8OMX3VQ1/physics-grounded-materials-ai-for-reliable-materials-discovery.html.