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October 16, 2025Advanced Functional Materials21 citations

Tailoring Prussian Blue Derivatives: Synthesis Strategies and Emerging Applications

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HZHonghe ZhengGZGuangxun ZhangBYBingyi Yan

Key Points

  • Prussian blue derivatives show promising potential in electrochemical energy storage, enhancing battery performance.
  • The review highlights synthesis methods like co-precipitation and hydrothermal techniques for creating effective nanomaterials.
  • Electrocatalysis applications demonstrate the versatility of prussian blue derivatives in facilitating oxygen evolution and reduction reactions.
  • Challenges in large-scale applications of these materials point to the need for innovations in design and synthesis.

Abstract

Abstract This review presents a systematic review of the research advancements made in Prussian blue analogues (PBAs) and their derivatives, offering a comprehensive overview of the current state of knowledge in this field. The crystal structure diversity of PBAs (such as cubic phase, monoclonal phase, hexagonal phase, etc.) and its regulation strategies are elaborated in detail, and the synthesis methods such as the co‐precipitation method, hydrothermal method and template method are summarized in detail. The article delves deeply into the application performance and mechanisms of metal oxides, sulfides, phosphides, selenides and other nanomaterials derived from PBAs in fields such as electrochemical energy storage (lithium/sodium‐ion batteries, supercapacitors), electrocatalysis (oxygen evolution/oxygen reduction reactions), environmental remediation (pollutant adsorption and degradation), and biomedicine (drug delivery, bioimaging). Finally, the challenges faced by this field in large‐scale applications are pointed out, and the future development directions such as artificial intelligence‐assisted design, high‐throughput synthesis and cross‐scale simulation are prospected.

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Cite This Study

Zheng et al. (2025) studied this question.

synapsesocial.com/papers/68f147cc724575985c3fd343https://doi.org/10.1002/adfm.202522461
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