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◆ Materials Reports Energy2025-12-12· Materials science

High-entropy strategies transforming solid oxide cells: Progress and perspectives

Ming Xiao, Haosong Di, Zuoqing Liu, Yuesheng Bai, Ran Ran, Wei Zhou, Guangming Yang, Zongping Shao

原始摘要(英文原文)· Original abstract
Solid oxide cells (SOCs) have emerged as one of the key technologies for low-carbon energy transition due to their fuel flexibility and high system efficiency. However, their long-term deployment remains hindered by material degradation and interfacial instability under high-temperature and multi-atmospheric operating conditions. In particular, achieving a balance between catalytic activity and structural stability presents a major bottleneck in material design. High-entropy materials (HEMs), with their unique configurational entropy effect, multi-principal element synergy, and tunable local defect chemistry, offer a promising pathway to overcome these limitations. This perspective reviews recent advances in the application of HEMs in SOCs, including element selection and structure tuning, machine-learning-assisted design, in situ leaching and self-assembly engineering, and high-entropy coating strategies. Special attention is paid to how HEMs leverage their multi-elemental composition and defect regulation to enhance electrode performance, stabilize interfaces, and improve tolerance to poisoning species. We further highlight the potential of data-driven approaches for accelerating HEM screening and performance optimization, and discuss the integration of high-throughput experimentation with computational modeling to enable efficient exploration of the vast compositional space. Despite the remarkable progress, key challenges remain in achieving long-term stability and reliability across diverse operating scenarios. Future research should focus on precise control of non-equimolar compositions, development of cross-scale dynamic characterization techniques, and establishment of closed-loop frameworks that couple data-driven models with experimental feedback. These efforts will pave the way toward the rational design of high-performance, durable SOC systems.
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