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无缺陷普鲁士蓝类似物作为高能量密度钾离子电池的零应变阴极材料

Defect-Free Prussian Blue Analogue as Zero-Strain Cathode Material for High-Energy-Density Potassium-Ion Batteries.

作者信息

Zhou Qianwen, Liu Hua Kun, Dou Shi Xue, Chong Shaokun

机构信息

Frontiers Science Center for Flexible Electronics, Institute of Flexible Electronics, Northwestern Polytechnical University, Xi'an 710072, China.

Institute of Energy Materials Science (IEMS), University of Shanghai for Science and Technology, Shanghai 200093, China.

出版信息

ACS Nano. 2024 Mar 5;18(9):7287-7297. doi: 10.1021/acsnano.4c00251. Epub 2024 Feb 19.

Abstract

Prussian blue analogues (PBAs) have been widely studied as cathodes for potassium-ion batteries (PIBs) due to their three-dimensional framework structure and easily adjustable composition. However, the phase transition behavior and [Fe(CN)] anionic defects severely deteriorate electrochemical performances. Herein, we propose a defect-free potassium iron manganese hexacyanoferrate (KFeMn[Fe(CN)]·1.26HO, KFMHCF-1/2) as the cathode material for PIBs. The Fe-Mn binary synergistic and defect-free effects can inhibit the cell volume change and octahedral slip during the K-ion insertion/extraction process, so that the phase transformation behavior (monoclinic ↔ cubic) is effectively inhibited, achieving a zero-strain solid solution mechanism employing Fe and Mn as dual active-sites. Thus, KFMHCF-1/2 contributes the highest initial capacity of 155.3 mAh·g with an energy density of 599.5 Wh·kg at 10 mA·g among the reported PBA cathodes, superior rate capability, and cyclic stability over 450 cycles. The assembled K-ion full battery using K deposited on graphite (K@G) as anode also delivers high reversible specific capacity of 131.1 mAh·g at 20 mA·g and ultralong lifespans over 1000 cycles at 50 mA·g with the lowest capacity decay rate of 0.044% per cycle. This work will promote the rapid application of high-energy-density PIBs.

摘要

普鲁士蓝类似物(PBAs)因其三维骨架结构和易于调节的组成,作为钾离子电池(PIBs)的阴极受到了广泛研究。然而,相变行为和[Fe(CN)]阴离子缺陷严重恶化了电化学性能。在此,我们提出一种无缺陷的钾铁锰六氰合铁酸盐(KFeMn[Fe(CN)]·1.26HO,KFMHCF-1/2)作为PIBs的阴极材料。Fe-Mn二元协同和无缺陷效应可以抑制钾离子插入/脱出过程中的电池体积变化和八面体滑移,从而有效抑制相变行为(单斜 ↔ 立方),实现以Fe和Mn为双活性位点的零应变固溶体机制。因此,在已报道的PBA阴极中,KFMHCF-1/2在10 mA·g时贡献了最高的初始容量155.3 mAh·g,能量密度为599.5 Wh·kg,具有优异的倍率性能和超过450次循环的循环稳定性。使用沉积在石墨上的钾(K@G)作为阳极组装的钾离子全电池在20 mA·g时也具有131.1 mAh·g的高可逆比容量,在50 mA·g时具有超过1000次循环的超长寿命,最低容量衰减率为每循环0.044%。这项工作将推动高能量密度PIBs的快速应用。

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