Christian E. HalbigPhilipp RietschSiegfried Eigler
In the last decades, organic azides haven proven to be very useful precursors in organic chemistry, for example in 1,3-dipolar cycloaddition reactions (click-chemistry). Likewise, azides can be introduced into graphene oxide with an almost intact carbon framework, namely oxo-functionalized graphene (oxo-G1), which is a highly oxidized graphene derivative and a powerful precursor for graphene that is suitable for electronic devices. The synthesis of a graphene derivative with exclusively azide groups (graphene azide) is however still a challenge. In comparison also hydrogenated graphene, called graphene or halogenated graphene remain challenging to synthesize. A route to graphene azide would be the desoxygenation of azide functionalized oxo-G1. Here we show how treatment of azide functionalized oxo-G1 with HCl enlarges the π-system and removes strongly adsorbed water and some oxo-functional groups. This development reflects one step towards graphene azide.
Mariana C. F. CostaValéria S. MarangoniPei Rou NgHang T. L. NguyenAlexandra CarvalhoA. H. Castro Neto
Maxim K. RabchinskiiSergei A. RyzhkovDemid A. KirilenkoNikolay V. UlinМ. В. БайдаковаV. V. ShnitovSergei I. PavlovRatibor G. ChumakovDina Yu. StolyarovaNadezhda A. BesedinaA. V. ShvidchenkoDmitrii V. PotorochinFriedrich RothД. А. СмирновM. V. GudkovMaria BrzhezinskayaOleg I. LebedevВ. П. МельниковP. N. Brunkov
Rabchinskii, Maxim K.Ryzhkov, Sergei A.Kirilenko, Demid A.Ulin, Nikolay V.Baidakova, Marina V.Shnitov, Vladimir V.Pavlov, Sergei I.Chumakov, Ratibor G.Stolyarova, Dina Yu.Besedina, Nadezhda A.Shvidchenko, Aleksandr V.Potorochin, DmitriiRoth, FriedrichSmirnov, Dmitry A.Gudkov, Maksim V.Brzhezinskaya, MariaLebedev, Oleg I.Melnikov, Valery P.Brunkov, Pavel N.