The chemistry of imperfections in N-graphene.

Usachov, Dmitry; Fedorov, Alexander; Vilkov, Oleg; Senkovskiy, Boris; Adamchuk, Vera K; Yashina, Lada V; Volykhov, Andrey A; Farjam, Mani et al. · Nano Lett · 2014

basic_science · Level V

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Abstract

Many propositions have been already put forth for the practical use of N-graphene in various devices, such as batteries, sensors, ultracapacitors, and next generation electronics. However, the chemistry of nitrogen imperfections in this material still remains an enigma. Here we demonstrate a method to handle N-impurities in graphene, which allows efficient conversion of pyridinic N to graphitic N and therefore precise tuning of the charge carrier concentration. By applying photoemission spectroscopy and density functional calculations, we show that the electron doping effect of graphitic N is strongly suppressed by pyridinic N. As the latter is converted into the graphitic configuration, the efficiency of doping rises up to half of electron charge per N atom.