Hao Zhiqiang, Shi Xiaoyan, Zhu Wenqing, Zhang Xiaoyue, Yang Zhuo, Li Lin, Hu Zhe, Zhao Qing, Chou Shulei
Institute for Carbon Neutralization, College of Chemistry and Materials Engineering, Wenzhou University Wenzhou Zhejiang 325035 China
College of Materials Science and Engineering, Shenzhen University Shenzhen 518055 China
Chem Sci. 2022 Aug 22;13(38):11376-11381. doi: 10.1039/d2sc04217g. eCollection 2022 Oct 5.
Bismuth is a promising anode for potassium-ion batteries (PIBs) due to its suitable redox potential, large theoretical capacity, and superior electronic conductivity. Herein, we report a Bi@C (Bi nanoparticles uniformly embedded in a carbon skeleton) composite anode which delivers a superior rate performance of 244.3 mA h g at 10.0 A g and a reversible capacity of 255.6 mA h g after 200 cycles in an optimized ether-based electrolyte. The outstanding electrochemical performance results from its robust structural design with fast reaction kinetics, which are confirmed by both experimental characterization studies and first-principles calculations. The reversible potassium storage mechanism of the Bi@C composite was also investigated by X-ray diffraction. In addition, the full PIB cell assembled with a Bi@C composite anode and nickel-based Prussian blue analogue cathode exhibits high discharge voltage (3.18 V), remarkable power density (>10 kW kg), and an excellent capacity retention of 87.8% after 100 cycles. The results demonstrate that the PIBs with Bi anodes are promising candidates for power-type energy storage devices.
铋因其合适的氧化还原电位、大的理论容量和优异的电子导电性,是一种很有前景的钾离子电池(PIB)负极材料。在此,我们报道了一种Bi@C(铋纳米颗粒均匀嵌入碳骨架)复合负极,在优化的醚基电解质中,该负极在10.0 A g电流密度下具有244.3 mA h g的优异倍率性能,在200次循环后可逆容量为255.6 mA h g。其出色的电化学性能源于其具有快速反应动力学的稳健结构设计,这通过实验表征研究和第一性原理计算得到证实。还通过X射线衍射研究了Bi@C复合材料的可逆钾存储机制。此外,由Bi@C复合负极和镍基普鲁士蓝类似物正极组装的全PIB电池表现出高放电电压(3.18 V)、显著的功率密度(>10 kW kg),并且在100次循环后具有87.8%的优异容量保持率。结果表明,含铋负极的PIB是功率型储能装置的有前途的候选者。