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Electrochemically Synthesized Sb/Sb2O3 Composites as High-Capacity Anode Materials Utilizing a Reversible Conversion Reaction for Na-Ion Batteries

机译:电化学合成的Sb / Sb2O3复合材料作为高容量阳极材料,利用可逆转换反应用于钠离子电池

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摘要

Sb/Sb2O3 composites are synthesized by a one-step electrodeposition process from an aqueous electrolytic bath containing a potassium antimony tartrate complex. The synthesis process involves the electrodeposition of Sb simultaneously with the chemical deposition of Sb2O3, which allows for the direct deposition of morula-like Sb/Sb2O3 particles on the current collector without using a binder. Structural characterization confirms that the Sb/Sb2O3 composites are composed of approximately 90 mol % metallic Sb and 10 mol % crystalline Sb2O3. The composite exhibits a high reversible capacity (670 mAh g(-1)) that is higher than the theoretical capacity of Sb (660 mAh g-1). The high reversible capacity results from the conversion reaction between Na2O and Sb2O3 that occurs additionally to the alloying/dealloying reaction of Sb with Na. Moreover, the Sb/Sb2O3 composite shows excellent cycle performance with 91.8% capacity retention over 100 cycles, and a superior rate capability of 212 mAh g-1 at a high current density of 3300 mA g(-1). The outstanding cycle performance is attributed to an amorphous Na2O phase generated by the conversion reaction, which inhibits agglomeration of Sb particles and acts as an effective buffer against volume change of Sb during cycling.
机译:Sb / Sb2O3复合材料是通过一步电沉积法从含有酒石酸锑锑钾的水溶浴中合成的。合成过程涉及Sb的电沉积和Sb2O3的化学沉积,这使得桑样Sb / Sb2O3颗粒直接沉积在集电器上而无需使用粘合剂。结构表征证实,Sb / Sb2O3复合材料由大约90 mol%的金属Sb和10 mol%的结晶Sb2O3组成。该复合材料具有较高的可逆容量(670 mAh g(-1)),高于Sb的理论容量(660 mAh g-1)。高可逆容量来自Na2O和Sb2O3之间的转化反应,这是Sb与Na的合金化/脱合金反应之外发生的。此外,Sb / Sb2O3复合材料在100个循环中显示出优异的循环性能和91.8%的容量保持率,在3300 mA g(-1)的高电流密度下具有212 mAh g-1的优异倍率能力。出色的循环性能归因于转化反应生成的非晶态Na2O相,该相抑制了Sb颗粒的团聚,并在循环过程中作为有效的缓冲剂来抵抗Sb的体积变化。

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