Zero‐Waste Polyanion and Prussian Blue Composites toward Practical Sodium‐Ion Batteries
Abstract
AbstractClosed‐loop transformation of raw materials into high‐value‐added products is highly desired for the sustainable development of the society but is seldom achieved. Here, a low‐cost, solvent‐free and “zero‐waste” mechanochemical protocol is reported for the large‐scale preparation of cathode materials for sodium‐ion batteries (SIBs). This process ensures full utilization of raw materials, effectively reduces water consumption, and simplifies the operating process. Benefiting from the synergistic effect between the cubic Prussian blue analogs (c‐NFFHCF) and dehydrated polyanionic sulfates (m‐NFS), the generated composite exhibits promising wide‐temperature electrochemical performance and excellent practical application potential. The synergistic effect between m‐NFS and c‐NFFHCF in the composite is revealed through multiple in situ characterizations and density functional theory calculations. The proposed mechanochemical strategy can be scaled to a kilogram‐grade level, providing a sustainable method for the value‐added utilization of the by‐products during Prussian blue analogs synthesis, advancing the design of “zero‐waste” cathode materials for low‐cost practical SIBs.
Article Details
Authors (12)
Yun Gao
Engineering Research Center of Advanced Rare Earth Materials, Department of Chemistry
Xiaoyue Zhang
Department of Materials Science, Fudan University, Shanghai 200433, China
Hang Zhang
Jian Peng
Weibo Hua
School of Chemical Engineering and Technology
Yao Xiao
School of Chemistry and Chemical Engineering
Xiao‐Hao Liu
Institute for Carbon Neutralization Technology College of Chemistry and Materials Engineering Wenzhou University Wenzhou Zhejiang 325035 China
Li Li
Yun Qiao
School of Environmental and Chemical Engineering Shanghai University Shanghai 200444 China
Jiao‐Zhao Wang
Institute for Carbon Neutralization Technology College of Chemistry and Materials Engineering Wenzhou University Wenzhou Zhejiang 325035 China
Chaofeng Zhang
Institutes of Physical Science and Information Technology, School of Materials Science and Engineering, Leibniz International Joint Research Centre of Materials Sciences of Anhui Province
Shulei Chou
Institute for Carbon Neutralization Technology, College of Chemistry and Materials Engineering