Ball-Milling Synthesis of Low-Water and Phase-Stable Prussian Blue for Sodium-Ion Batteries

29 Pages Posted: 15 Apr 2024

See all articles by Hongyu Cheng

Hongyu Cheng

Shanghai University

Yi-Nuo Liu

Shanghai University

Dongxiao Wang

Shanghai University

Yang Liu

Shanghai University

Bingkun Guo

Shanghai University

Abstract

Prussian blue analogues (PBAs), due to their high theoretical capacity, low cost, and ease of preparation, are among the most promising cathode materials for sodium-ion batteries. However, most syntheses are conducted in aqueous solutions using co-precipitation methods, and the large lattice gaps in PBAs make it challenging to effectively control interstitial water content. Interstitial water within the structure of PBAs has been a primary cause of structural instability, performance degradation, and a major barrier to their widespread application. Herein, the incorporation of large-radius ions (K+, Ba2+, Ca2+, La3+) into the structure of iron-based Prussian Blue via ball milling and its impact on the structure and properties of the material are investigated. The ions (Ba2+, Ca2+, La3+) readily react with (C2O4)2- during the synthesis process to form oxalate impurities. Nevertheless, through the solvent-free ball milling method, K+ ions were successfully incorporated into the bulk structure of the material, resulting in the synthesis of Na0.32K1.53Fe[Fe(CN)6]0.98•□0.02•0.82H2O (NaK-PB) with minimal water content. Benefiting from the enhanced structural stability of the material, NaK-PB retained a reversible capacity of 91.4 mAh g-1 in 500 cycles at 0.1C, with a capacity retention rate 64% higher than that of material without K+ doping. This work presents a new strategy for reducing interstitial water content in PBAs and aids in advancing the commercial application of solvent-free ball milling synthesis for PBAs.

Keywords: Sodium-ion Batteries, Prussian blue analogues, Interstitial water, Ball milling synthesis, Large-radius ions doped

Suggested Citation

Cheng, Hongyu and Liu, Yi-Nuo and Wang, Dongxiao and Liu, Yang and Guo, Bingkun, Ball-Milling Synthesis of Low-Water and Phase-Stable Prussian Blue for Sodium-Ion Batteries. Available at SSRN: https://ssrn.com/abstract=4794795 or http://dx.doi.org/10.2139/ssrn.4794795

Hongyu Cheng

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Yi-Nuo Liu

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Dongxiao Wang

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Yang Liu (Contact Author)

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Bingkun Guo

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
39
Abstract Views
245
PlumX Metrics