Institute of Chemical and Engineering Sciences, 1, Pesek Road, Jurong Island, Singapore.
ACS Nano. 2010 Aug 24;4(8):4753-61. doi: 10.1021/nn1004183.
Novel peapod-like Co@carbon and Co(3)O(4)@carbon composite nanostructures have been successfully fabricated for the first time based on rational design and elaborate analyses. The nanostructures exhibit the unique feature of Co or Co(3)O(4) nanoparticles (20 nm) encapsulated inside and well-graphitized carbon layers coating outside. The peapod-like Co@carbon and Co(3)O(4)@carbon nanostructures exhibit intriguing morphologies, architectures, and chemical compositions. What is more important, the unique morphologies, architectures, and chemical compositions will lead to perfect performances in many applications. In this paper, a good example of Li-ion battery testing is given to demonstrate the superior stability and rate capability of the Co(3)O(4)@carbon. The peapod-like nanostructure of Co(3)O(4)@carbon demonstrates very high specific capacity (around 1000 mAh/g at the charge/discharge rate of 1C) and wonderful cyclability (at least 80% retention is available when cycled back from very high charge/discharge rate of 10C) during the galvanostatic cycling, indicating it as the promising candidate for Li-ion batteries' anodes. Additionally, the excellent electrochemical performance is significantly associated with the unique architecture in the samples, which verifies the feasibility of rational design of hierarchical materials for the actual applications. Meanwhile, the Co@carbon and Co(3)O(4)@carbon nanostructures demonstrate the regular and uniform distribution of magnetic nanoparticles in well-graphitized carbon fiber, which is a great achievement in the field of monodispersing and isolating magnetic nanoparticles. The prepared samples can also be potentially applied in other fields, such as gene delivery, catalysis, and magnetism.
首次基于合理的设计和细致的分析,成功制备了新颖的豌豆荚状 Co@碳和 Co(3)O(4)@碳复合纳米结构。该纳米结构具有独特的特征,即 20nm 的 Co 或 Co(3)O(4)纳米颗粒被包裹在内部,并且外面有良好石墨化的碳层。豌豆荚状 Co@碳和 Co(3)O(4)@碳纳米结构具有引人入胜的形态、结构和化学成分。更重要的是,独特的形态、结构和化学成分将导致在许多应用中具有完美的性能。在本文中,以锂离子电池测试为例,证明了 Co(3)O(4)@碳的卓越稳定性和倍率性能。Co(3)O(4)@碳的豌豆荚状纳米结构在恒流循环中表现出非常高的比容量(在 1C 的充放电速率下约为 1000mAh/g)和出色的循环稳定性(当从非常高的 10C 充放电速率循环回来时,至少保留 80%),表明其作为锂离子电池阳极的有前途的候选者。此外,优异的电化学性能与样品中的独特结构密切相关,这验证了用于实际应用的分级材料的合理设计的可行性。同时,Co@碳和 Co(3)O(4)@碳纳米结构在良好石墨化碳纤维中展示了磁性纳米颗粒的规则和均匀分布,这是在单分散和隔离磁性纳米颗粒领域的一项重大成就。所制备的样品还可以潜在地应用于其他领域,如基因传递、催化和磁性。