Rational Design of a N,S Co-Doped Supermicroporous CoFe-Organic Framework Platform for Water Oxidation.
ChemSusChem
; 13(10): 2564-2570, 2020 May 22.
Article
em En
| MEDLINE
| ID: mdl-32196953
It remains a challenge to rational design of a new metal-organic framework (MOF) as highly efficient direct electrocatalysts for the oxygen evolution reaction (OER). Herein, we developed a simple and effective method to explore a new pillared-layered MOF with syringic acid as a promising OER electrocatalyst. The isostructural mono-, heterobimetallic MOF and N,S co-doped MOF by mixing thiourea were quickly synthesized in a high yield under solvothermal condition. Moreover, the optimized N,S co-doped MOF exhibits the lowest overpotential of 254â
mV at 10â
mA cm-2 on a glass carbon electrode and a small Tafel slope of 50â
mV dec-1 , especially, this catalyst also possesses long-term electrochemical durability for at least 16â
h. According to the characterization, the incorporation of N and S atoms into this heterobimetallic CoFe-based MOF could modify its pore structure, tune the electronic structure, accordingly, improve the mass and electron transportation, and facilitate the formation of active species, as a consequence, the improved activity of this new N,S co-doped MOF for OER should be mainly be ascribed to higher electrochemical activation toward the active species via inâ
situ surface modification during the OER process.
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MEDLINE
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En
Ano de publicação:
2020
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Article