铁电性
材料科学
纳米技术
纳米材料
合理设计
钙钛矿(结构)
领域(数学分析)
催化作用
领域工程
表面工程
转化式学习
领域(数学)
智能材料
光电子学
选择性
铁电陶瓷
作者
Shun Li,Yuanzhi Hu,Xinyue Zhang,Yan Zhang,Yuqiao Zhang
摘要
Ferroelectric materials, distinguished by their unique spontaneous and electrically switchable polarization, have emerged as a transformative platform for dynamically regulating various catalytic processes. The rational design and engineering of ferroelectric domain configurations offer an effective strategy to tailor activity and selectivity of catalyst. This review comprehensively elucidates the fundamental mechanisms by which ferroelectric domains and domain walls manipulate key catalytic processes, including surface adsorption, charge carrier dynamics, and reaction pathways. Recent advances in domain engineering of representative ferroelectric catalytic materials (e.g., perovskite oxides and two-dimensional materials) are summarized. Finally, current challenges and future directions in this field are outlined, highlighting the potential of ferroelectric nanomaterials for next-generation efficient and smart catalytic systems.
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