State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui 230027, PR China.
Nanoscale. 2018 Nov 15;10(44):20813-20820. doi: 10.1039/c8nr06959j.
Novel nanoflower-like N-doped C/CoS2 spheres assembled from 2D wrinkled CoS2 nanosheets were synthesized through a facile one-pot solvothermal method followed by sulfurization. Ascribed to the optimized 3D nanostructure and rational surface engineering, the unique hierarchical structure of the nanoflower-like C/CoS2 composites showed an excellent sodium ion storage capacity accompanied by high specific capacity, superior rate performance and long-term cycling stability. Specifically, the conductive interconnected wrinkled nanosheets create a number of mesoporous structures and thus can greatly release the mechanical stress caused by Na+ insertion/extraction. Besides, it was observed from the experiments that many extra defect vacancies and Na+ storage sites are introduced by the nitrogen doping process. It was also observed that the crosslinked 2D nanosheets can effectively reduce the diffusion lengths of sodium ions and electrons, resulting in an outstanding rate performance (>700 mA h g-1 at 1 A g-1 and 458 mA h g-1 at even 10 A g-1) and extraordinary cycling stability (698 mA h g-1 at 1 A g-1 after 500 cycles). The results provide a facile approach to fabricate promising anode materials for high-performance sodium-ion batteries (SIBs).
通过简便的一锅溶剂热法和随后的硫化反应,合成了由二维褶皱 CoS2 纳米片组装而成的新型纳米花状 N 掺杂 C/CoS2 球。由于优化的 3D 纳米结构和合理的表面工程,纳米花状 C/CoS2 复合材料的独特分层结构表现出优异的钠离子存储能力,同时具有高比容量、卓越的倍率性能和长期循环稳定性。具体来说,导电的相互连接的褶皱纳米片形成了许多中孔结构,从而可以大大释放 Na+插入/提取引起的机械应力。此外,实验还观察到氮掺杂过程中引入了许多额外的缺陷空位和钠离子存储位点。交联的二维纳米片还可以有效地缩短钠离子和电子的扩散长度,从而实现出色的倍率性能(在 1 A g-1 时高达 700 mA h g-1,甚至在 10 A g-1 时仍高达 458 mA h g-1)和非凡的循环稳定性(在 500 次循环后在 1 A g-1 时仍为 698 mA h g-1)。该结果为制备高性能钠离子电池(SIBs)的有前途的阳极材料提供了一种简便的方法。