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A Flexible and Boron-Doped Carbon Nanotube Film for High-Performance Li Storage

机译:柔性和掺硼碳纳米管薄膜,用于高性能锂存储

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Boron-doped carbon nanotubes are a promising candidate for Li storage due to the unique electronic structure and high crystallinity brought by the boron dopants. However, the relatively low Li storage capacity has limited its application in the electrochemical energy storage field, which is mainly caused by the predominantly intact graphitic structure on their surface with limited access points for Li ion entering. Herein, we report a novel B-doped CNTs (py-B-CNTs) film, in which the CNTs possess intrinsically rough surface but flat internal graphitic structure. When used as a flexible anode material for LIBs, this py-B-CNTs film delivers significantly enhanced capacity than the conventional B-doped CNTs or the pristine CNTs films, with good rate capability and excellent cycling performance as well. Moreover, this flexible film also possesses excellent mechanical flexibility, making it capable of being used in a prototype flexible LIB with stable power output upon various bending states.
机译:硼掺杂的碳纳米管由于其独特的电子结构和硼掺杂剂带来的高结晶度,成为锂存储的有前途的候选者。然而,相对较低的锂存储容量限制了其在电化学能量存储领域中的应用,这主要是由于其表面上主要是完整的石墨结构以及进入锂离子的通道有限而引起的。在本文中,我们报道了一种新型的B掺杂CNTs(py-B-CNTs)膜,其中CNTs具有内在的粗糙表面,但内部石墨结构平坦。当用作LIB的柔性阳极材料时,此py-B-CNTs膜比常规的B掺杂CNT或原始CNTs膜具有显着增强的容量,并具有良好的倍率性能和出色的循环性能。而且,该柔性膜还具有优异的机械柔性,使其能够用于在各种弯曲状态下具有稳定的功率输出的原型柔性LIB中。

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