Thermochemical Activation of Wood with NaOH, KOH and H3PO4 for the Synthesis of Nitrogen-Doped Nanoporous Carbon for Oxygen Reduction Reaction

Author:

Dobele Galina1,Volperts Aleksandrs1ORCID,Plavniece Ance1ORCID,Zhurinsh Aivars1,Upskuviene Daina2,Balciunaite Aldona2,Niaura Gediminas2ORCID,Colmenares-Rausseo Luis César3ORCID,Tamasauskaite-Tamasiunaite Loreta2ORCID,Norkus Eugenijus2ORCID

Affiliation:

1. Latvian State Institute of Wood Chemistry, Dzerbenes Str. 27, LV-1006 Riga, Latvia

2. Center for Physical Sciences and Technology, Sauletekio Ave. 3, LT-10257 Vilnius, Lithuania

3. SINTEF Industry, Sustainable Energy Technology, Strindvegen 4, NO-7465 Trondheim, Norway

Abstract

Carbonization of biomass residues followed by activation has great potential to become a safe process for the production of various carbon materials for various applications. Demand for commercial use of biomass-based carbon materials is growing rapidly in advanced technologies, including in the energy sector, as catalysts, batteries and capacitor electrodes. In this study, carbon materials were synthesized from hardwood using two carbonization methods, followed by activation with H3PO4, KOH and NaOH and doping with nitrogen. Their chemical composition, porous structure, thermal stability and structural order of samples were studied. It was shown that, despite the differences, the synthesized carbon materials are active catalysts for oxygen reduction reactions. Among the investigated carbon materials, NaOH-activated samples exhibited the lowest Tafel slope values, of −90.6 and −88.0 mV dec–1, which are very close to the values of commercial Pt/C at −86.6 mV dec–1.

Funder

project S-BMT-21-12

Publisher

MDPI AG

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