普鲁士蓝
材料科学
阴极
惰性
化学工程
电化学
热液循环
无机化学
惰性气体
电池(电)
水热合成
表面改性
比表面积
离子
钠离子电池
钠
纳米技术
核化学
作者
Ziyang Peng,Kai Wang,Han Su,Mengting Xue,Wei‐Xue Li,Xuanzhang Chen,Xiangming Chang,Qiming Liu
标识
DOI:10.1021/acsaem.5c03931
摘要
Prussian blue and its analogs have attracted significant attention as cathode materials for sodium-ion batteries due to their excellent performance and low cost. However, in typical Prussian blue materials, the process of sodium ion insertion and extraction usually initiates at the surface. Sodium ions struggle to diffuse into the center of the material, resulting in a relatively low overall specific capacity. To address this issue, we synthesized a Prussian material with a hollow structure in one step using a hydrothermal method. Under the action of ethanol and acetic acid, the material surface undergoes etching, exposing the central portion of the material and activating the previously inert iron that was difficult to react. The prepared Prussian blue improved the material’s specific capacity by increasing the specific surface area, activating deep-seated inert iron, and enhancing electrochemical activity. The material exhibits a specific capacity of 132.8 mAh g –1 at 0.1 C (1 C = 100 mA g –1 ), 109 mAh g –1 at 10 C, and a capacity retention of 83.5% after 300 cycles at 1 C, demonstrating good rate performance and excellent cycling stability. This simple synthesis strategy offers an excellent approach for preparing high-performance hollow-structured Prussian blue materials.
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