普鲁士蓝
纳米技术
蓝图
材料科学
电化学储能
阴极
可扩展性
相(物质)
设计要素和原则
系统工程
储能
数码产品
电化学
工程物理
工作(物理)
电流(流体)
工程伦理学
作者
Chengrui Yang,Zhengkang Chen,Hua Kun Liu,Shi Xue Dou,Wei Huang,Shaokun Chong
摘要
ABSTRACT As the development of sustainable, scalable post‐lithium‐ion batteries intensifies, Prussian blue analogues (PBAs) stand out for their unique open‐framework architecture. However, their translation into practical devices is hindered by intrinsic atomic‐scale challenges, including phase instability, Jahn‐Teller distortions, and ubiquitous vacancies. This review deciphers the fundamental mechanisms through which advanced engineering strategies, from precise elemental doping/substitution to disruptive high‐entropy design, reprogram PBAs’ electrochemical properties. We present a dedicated discourse on how these tactics selectively enhance intrinsic activity, engineer coordination environments, and dictate ion transport kinetics. By critically synthesizing these insights into actionable design principles, we provide a strategic blueprint for navigating the current challenges and accelerating the development of next‐generation PBA cathodes. This work is poised to serve as a foundational guide for researchers aiming to push the boundaries of energy storage materials.
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