Tang Zheng, Liu Rui, Jiang Dan, Cai Siqi, Li Huanhuan, Sun Dan, Tang Yougen, Wang Haiyan
Hunan Provincial Key Laboratory of Chemical Power Sources, College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China.
School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan 453007, PR China.
ACS Appl Mater Interfaces. 2024 Sep 11;16(36):47504-47512. doi: 10.1021/acsami.4c08082. Epub 2024 Aug 27.
Biomass-derived hard carbon materials are attractive for sodium-ion batteries due to their abundance, sustainability, and cost-effectiveness. However, their widespread use is hindered by their limited specific capacity. Herein, a type of bamboo-derived hard carbon with adjustable pore structures is developed by employing a ball milling technique to modify the carbon chain length in the precursor. It is observed that the length of the carbon chain in the precursor can effectively control the rearrangement behavior of the carbon layers during the high-temperature carbonization process, resulting in diverse pore structures ranging from closed pores to open pores, which significantly impact the electrochemical properties. The optimized hard carbon with abundant closed pores exhibits a high specific capacity of 356 mAh g at 20 mA g, surpassing that of bare hard carbon (243 mAh g) and hard carbon with abundant open pores (129 mAh g at 20 mA g). However, the kinetic analysis reveals that hard carbon with open pores shows better sodium-ion diffusion kinetics, indicating that a balance between the closed and open pores should be considered. This research offers valuable insights into pore design and presents a promising approach for enhancing the performance of hard carbon anode materials derived from biomass precursors.
生物质衍生的硬碳材料因其丰富性、可持续性和成本效益,对钠离子电池具有吸引力。然而,其有限的比容量阻碍了它们的广泛应用。在此,通过采用球磨技术来改变前驱体中的碳链长度,开发出一种具有可调孔结构的竹衍生硬碳。据观察,前驱体中碳链的长度可以有效地控制高温碳化过程中碳层的重排行为,从而产生从闭孔到开孔的多种孔结构,这对电化学性能有显著影响。优化后的具有丰富闭孔的硬碳在20 mA g下表现出356 mAh g的高比容量,超过了裸硬碳(243 mAh g)和具有丰富开孔的硬碳(20 mA g下为129 mAh g)。然而,动力学分析表明,具有开孔的硬碳表现出更好的钠离子扩散动力学,这表明应考虑闭孔和开孔之间的平衡。本研究为孔设计提供了有价值的见解,并提出了一种提高源自生物质前驱体的硬碳负极材料性能的有前景的方法。