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Graphene-anchored sodium single atoms: A highly active and stable

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Graphene-anchored sodium single atoms: A highly active and stable

Nano Research (@research_nano) / X

Graphene-anchored sodium single atoms: A highly active and stable

a) The reaction process of CO2 reduction to CH4 on Zn‐N4‐graphene

Graphene-anchored sodium single atoms: A highly active and stable

Redox-neutral electrochemical conversion of CO2 to dimethyl

Graphene-anchored sodium single atoms: A highly active and stable

Direct transformation of bulk copper into copper single sites via

Graphene-anchored sodium single atoms: A highly active and stable

Molecules, Free Full-Text

Graphene-anchored sodium single atoms: A highly active and stable

Atomically dispersed Ni induced by ultrahigh N-doped carbon

Graphene-anchored sodium single atoms: A highly active and stable

Defect engineering of high-loading single-atom catalysts for

Graphene-anchored sodium single atoms: A highly active and stable

Self-carbon-thermal-reduction strategy for boosting the Fenton

Graphene-anchored sodium single atoms: A highly active and stable

Atomic engineering of high-density isolated Co atoms on graphene

Graphene-anchored sodium single atoms: A highly active and stable

Synthesis kinetics toward graphene single crystals. a) Growth rate

Graphene-anchored sodium single atoms: A highly active and stable

Ultra‐high‐resolution STEM and DFT calculated atomic structure. a