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Structure and Properties of Prussian Blue Analogues in Energy Storage and Conversion Applications

Haocong Yi, Runzhi Qin, Shouxiang Ding, Yuetao Wang, Shunning Li, Qinghe Zhao, Feng Pan

2020Advanced Functional Materials516 citationsDOI

Abstract

Abstract In recent years, Prussian blue analogue (PBA) materials have been widely explored and investigated in energy storage/conversion fields. Herein, the structure/property correlations of PBA materials as host frameworks for various charge‐carrier ions (e.g., Na + , K + , Zn 2+ , Mg 2+ , Ca 2+ , and Al 3+ ) is reviewed, and the optimization strategies to achieve advanced performance of PBA electrodes are highlighted. Prospects for further applications of PBA materials in proton, ammonium‐ion, and multivalent‐ion batteries are summarized, with extra attention given to the selection of anode materials and electrolytes for practical implementation. This work provides a comprehensive understanding of PBA materials, and will serve as a guidance for future research and development of PBA electrodes.

Topics & Concepts

Prussian blueMaterials scienceNanotechnologyAnodeEnergy storageElectrolyteElectrodeIonElectrochemistryOrganic chemistryPhysical chemistryChemistryPower (physics)Quantum mechanicsPhysicsAdvanced battery technologies researchAdvancements in Battery MaterialsAdvanced Battery Materials and Technologies