Xu Lihong, Chen Xiaochuan, Guo Wenti, Zeng Lingxing, Yang Tao, Xiong Peixun, Chen Qinghua, Zhang Jianmin, Wei Mingdeng, Qian Qingrong
Engineering Research Center of Polymer Green Recycling of Ministry of Education, College of Environmental Science and Engineering, Fujian Normal University, Fuzhou, Fujian 35007, China.
Fujian Provincial Key Laboratory of Quantum Manipulation and New Energy Materials College of Physics and Energy, Fujian Normal University, Fuzhou, Fujian 350117, China.
Nanoscale. 2021 Mar 12;13(9):5033-5044. doi: 10.1039/d0nr08788b.
The construction of anode materials for sodium-ion batteries (SIBs) and potassium-ion batteries (PIBs) with a high energy and a long lifespan is significant and still challenging. Here, sulfur-defective vanadium sulfide/carbon fiber composites (D-V5S8/CNFs) are designed and fabricated by a facile electrospinning method, followed by sulfuration treatment. The unique architecture, in which V5S8 nanoparticles are confined inside the carbon fiber, provides a short-range channel and abundant adsorption sites for ion storage. Moreover, enlarged interlayer spacings could also alleviate the volume changes, and offer small vdW interactions and ionic diffusion resistance to store more Na and K ions reversibly and simultaneously. The DFT calculations further demonstrate that sulfur defects can effectively facilitate the adsorption behavior of Na+ and K+ and offer low energy barriers for ion intercalation. Taking advantage of the functional integration of these merits, the D-V5S8/CNF anode exhibits excellent storage performance and long-term cycling stability. It reveals a high capacity of 462 mA h g-1 at a current density of 0.2 A g-1 in SIBs, while it is 350 mA h g-1 at 0.1 A g-1 in PIBs, as well as admirable long-term cycling characteristics (190 mA h g-1/17 000 cycles/5 A g-1 for SIBs and 165 mA h g-1/3000 cycles/1 A g-1 for PIBs). Practically, full SIBs upon pairing with a Na3V2(PO4)3 cathode also exhibit superior performance.
构建具有高能量和长寿命的钠离子电池(SIBs)和钾离子电池(PIBs)负极材料具有重要意义,但仍具有挑战性。在此,通过简便的静电纺丝方法制备了硫缺陷的硫化钒/碳纤维复合材料(D-V5S8/CNFs),随后进行硫化处理。独特的结构,其中V5S8纳米颗粒被限制在碳纤维内部,为离子存储提供了短程通道和丰富的吸附位点。此外,扩大的层间距还可以缓解体积变化,并提供较小的范德华相互作用和离子扩散阻力,以可逆地同时存储更多的Na和K离子。DFT计算进一步表明,硫缺陷可以有效地促进Na+和K+的吸附行为,并为离子嵌入提供低能垒。利用这些优点的功能集成,D-V5S8/CNF负极表现出优异的存储性能和长期循环稳定性。在SIBs中,在0.2 A g-1的电流密度下,其容量高达462 mA h g-1,而在PIBs中,在0.1 A g-1的电流密度下,其容量为350 mA h g-1,以及令人钦佩的长期循环特性(SIBs为190 mA h g-1/17000次循环/5 A g-1,PIBs为165 mA h g-1/3000次循环/1 A g-1)。实际上,与Na3V2(PO4)3正极配对的全SIBs也表现出优异的性能。