2013
DOI: 10.1039/c3ee40918j
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Metal-free catalytic reduction of 4-nitrophenol to 4-aminophenol by N-doped graphene

Abstract: The metal-free catalytic reduction of 4-nitrophenol (Nip) to 4-aminophenol (Amp) mediated by N-doped graphene (NG) was reported. Nip could be reduced to Amp completely without any by-product generation. The activity of the NG is comparable with some of the previously reported metallic catalysts. Interestingly, the NG sheet catalyzed reaction follows pseudo-zero-order kinetics, while all the metallic catalysts follow pseudo-first-order kinetics. The in situ FTIR experiment demonstrated that Nip ions will combin… Show more

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Cited by 409 publications
(285 citation statements)
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“…All of the ground-states geometries were optimized by the B3LYP functional and there were no imaginary frequencies, demonstrating that all of the obtained structures were stable. The 6e31G* basis set was selected in all the below calculations, based on the previous study [31,32]. Both of them were suitable for large complex systems.…”
Section: Methods Of Calculationsmentioning
confidence: 99%
“…All of the ground-states geometries were optimized by the B3LYP functional and there were no imaginary frequencies, demonstrating that all of the obtained structures were stable. The 6e31G* basis set was selected in all the below calculations, based on the previous study [31,32]. Both of them were suitable for large complex systems.…”
Section: Methods Of Calculationsmentioning
confidence: 99%
“…S2). This should be attribute to the doped nitrogen in carbon microtube [30]. The absorption of 4-NP at 400 nm disappeared quickly, and the absorption of 4-AP at about 300 nm M A N U S C R I P T…”
Section: A C C E P T E D Accepted Manuscriptmentioning
confidence: 96%
“…Additionally, the graphitic N can not only enhances the conductivity of C-N framework, but lowers the work function of carbon framework by introducing a donor level beneath conduction band, also reinforces the catalytic activity [20]. Other reports argued that the local positive charge and spin density of the C atoms induced by adjacent electronegative N is the main cause for the catalytic activity of NCs [47,48]. Given the multiple catalytic mechanisms of C-N framework, a-NCs are also feasible heterogeneous catalyst in aqueous solution.…”
Section: Figmentioning
confidence: 96%