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化学路径释放石墨烯。

Chemical routes to discharging graphenides.

机构信息

Department of Chemistry, Imperial College London, SW7 2AZ, UK.

Department of Physics and Astronomy, University College London, WC1E 6BT, UK.

出版信息

Nanoscale. 2017 Mar 2;9(9):3150-3158. doi: 10.1039/c6nr10004j.

Abstract

Chemical and electrochemical reduction methods allow the dispersion, processing, and/or functionalization of discrete sp-hybridised nanocarbons, including fullerenes, nanotubes and graphenes. Electron transfer to the nanocarbon raises the Fermi energy, creating nanocarbon anions and thereby activating an array of possible covalent reactions. The Fermi level may then be partially or fully lowered by intended functionalization reactions, but in general, techniques are required to remove excess charge without inadvertent covalent reactions that potentially degrade the nanocarbon properties of interest. Here, simple and effective chemical discharging routes are demonstrated for graphenide polyelectrolytes and are expected to apply to other systems, particularly nanotubides. The discharging process is inherently linked to the reduction potentials of such chemical discharging agents and the unusual fundamental chemistry of charged nanocarbons.

摘要

化学和电化学还原方法允许离散的 sp 杂化纳米碳,包括富勒烯、碳纳米管和石墨烯的分散、加工和/或功能化。电子转移到纳米碳上会提高费米能级,形成纳米碳阴离子,从而激活一系列可能的共价反应。费米能级可以通过预期的功能化反应部分或完全降低,但通常需要一些技术来去除多余的电荷,而不会发生潜在的共价反应,从而破坏感兴趣的纳米碳的性质。在这里,展示了用于石墨烯聚电解质的简单有效的化学放电途径,预计这些途径也适用于其他系统,特别是碳纳米管。放电过程与这些化学放电剂的还原电位以及带电纳米碳的异常基础化学密切相关。

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