Facilely synthesized nitrogen-doped reduced graphene oxide functionalized with copper ions as electrocatalyst for oxygen reductionJanuary 4, 2021 Read More | Synthesis of graphene : nature.com subject feeds Like this:Like Loading... More Graphene news STEK Automotive launches graphene-enhanced window films Green Reduction of Graphene Oxide using Kaffir Lime Peel Extract (Citrus hystrix) and Its Application as Adsorbent for Methylene Blue Nano assembly of NiFe spheres anchored on f-MWCNT for electrocatalytic reduction and sensing of nitrofurantoin in biological samples MIT research honored with Physics World “Breakthrough of the Year” awards From graphene oxide towards aminated graphene: facile synthesis, its structure and electronic properties Manipulating electronic structure of graphene for producing ferromagnetic graphene particles by Leidenfrost effect-based method Specific stacking angles of bilayer graphene grown on atomic-flat and -stepped Cu surfaces New water-soluble colorimetric pH and metal ione sensor based on graphene quantum dot modified with alizarine red S Author Correction: Small bandgap in atomically precise 17-atom-wide armchair-edged graphene nanoribbons Layer-controlled single-crystalline graphene film with stacking order via Cu–Si alloy formation Small bandgap in atomically precise 17-atom-wide armchair-edged graphene nanoribbons A swift technique to hydrophobize graphene and increase its mechanical stability and charge carrier density Molecular dynamics simulation of graphene sinking during chemical vapor deposition growth on semi-molten Cu substrate Large-area epitaxial growth of curvature-stabilized ABC trilayer graphene Gram-scale bottom-up flash graphene synthesis Large-area single-crystal AB-bilayer and ABA-trilayer graphene grown on a Cu/Ni(111) foil Proton-assisted growth of ultra-flat graphene films Author Correction: Layer-controlled single-crystalline graphene film with stacking order via Cu–Si alloy formation Stable high-capacity and high-rate silicon-based lithium battery anodes upon two-dimensional covalent encapsulation Effect of Hybrid mono/bimetallic Nanocomposites for an enhancement of Catalytic and Antimicrobial Activities previousAn interview with GraphAudio’s CEO to discuss the company’s CVD graphene-based speaker technologynextPutty-like composites of gallium metal with potential for real-world application