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Graphene/single-walled carbon nanotube hybrids: One-step catalytic growth and applications for high-rate Li-S batteries

机译:石墨烯/单壁碳纳米管杂化物:一步式催化生长及其在高速率锂电池中的应用

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摘要

The theoretically proposed graphene/single-walled carbon nanotube (G/SWCNT) hybrids by placing SWCNTs among graphene planes through covalent C-C bonding are expected to have extraordinary physical properties and promising engineering applications. However, the G/CNT hybrids that have been fabricated differ greatly from the proposed G/SWCNT hybrids because either the covalent C-C bonding is not well constructed or only multiwalled CNTs/carbon nanofibers rather than SWCNTs are available in the hybrids. Herein, a novel G/SWCNT hybrid was successfully fabricated by a facile catalytic growth on layered double hydroxide (LDH) at a high temperature over 950 C. The thermally stable Fe nanoparticles and the uniform structure of the calcined LDH flakes are essential for the simultaneously catalytic deposition of SWCNTs and graphene. The SWCNTs and the CVD-grown graphene, as well as the robust connection between the SWCNTs and graphene, facilitated the construction of a high electrical conductive pathway. The internal spaces between the two stacked graphene layers and among SWCNTs offer room for sulfur storage. Therefore, the as obtained G/SWCNT-S cathode exhibited excellent performance in Li-S batteries with a capacity as high as 650 mAh g~(-1) after 100 cycles even at a high current rate of 5 C. Such a novel G/SWCNT hybrid can serve not only as a prototype to shed light on the chemical principle of G/CNT synthesis but also as a platform for their further applications in the area of nanocomposites, heterogeneous catalysis, drug delivery, electrochemical energy storage, and so on.
机译:理论上提出的通过共价C-C键合将SWCNT置于石墨烯平面之间的石墨烯/单壁碳纳米管(G / SWCNT)杂化物有望具有非凡的物理性能和有希望的工程应用。但是,已经制造的G / CNT杂化物与建议的G / SWCNT杂化物有很大的不同,因为在杂化物中共价C-C键的结构不能很好地构建,或者只有多壁CNT /碳纳米纤维而不是SWCNT。本文中,通过在950℃以上的高温下在层状双氢氧化物(LDH)上轻松催化生长,成功制备了新型G / SWCNT杂化体。碳纳米管和石墨烯的催化沉积。 SWCNT和CVD生长的石墨烯以及SWCNT和石墨烯之间的牢固连接促进了高导电路径的构造。两个堆叠的石墨烯层之间和SWCNT之间的内部空间为硫的存储提供了空间。因此,所得的G / SWCNT-S阴极即使在5C的高电流率下在100次循环后仍具有高达650mAh g〜(-1)的容量,在Li-S电池中表现出优异的性能。 / SWCNT杂化物不仅可以作为阐明G / CNT合成化学原理的原型,而且还可以作为它们在纳米复合材料,非均相催化,药物输送,电化学能量存储等领域进一步应用的平台。

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