Transfer learning with domain knowledge adaptation for stability evaluation of dual-atom catalysts on nitrogen-doped carbon

Author

Minotaki, Maria G.

López, Núria

Publication date

2025-08-01



Abstract

Dual-atom catalysts are innovative materials, with exceptional activity and selectivity. Yet, their stability remains a key challenge in catalyst design. Conventional characterization and synthesis techniques struggle to precisely identify active sites due to their vast configurations, while distinguishing the metal speciation remains challenging. In a theoretical approach, density functional theory based high-throughput screening is constrained by computational cost and time. Herein, we implemented transfer learning with domain knowledge adaptation for the evaluation of the stability against metal aggregation of DACs on nitrogen-doped carbon. The transferability of the stability descriptors applied to single-atoms on doped carbon to dual-atom catalysts on nitrogen-doped carbon, demonstrated their universality to more complex systems. Valuable insights were gained for the design of stable catalysts with the identification of the optimum metal pair and coordination environment combination, and the examination of stability–synergistic effect tradeoff.

Document Type

Article

Document version

Accepted version

Language

English

CDU Subject

54 - Chemistry. Crystallography. Mineralogy

Subject

Química

Pages

10 p.

Publisher

RSC

Grant Agreement Number

Ministry of Science and Innova­tion (Ref, No, PID2021-122516OB-IO0)

NCCR Catalysis (grant number 180544), a National Centre of Competence in Research funded by the Swiss National Science Foundation

Documents

This document contains embargoed files until 2026-08-01

Rights

Attribution 4.0 International

Attribution 4.0 International

This item appears in the following Collection(s)

Papers [1240]