The development of low-cost catalysts with oxygen reduction reaction (ORR) activity superior to that of Pt for fuel cells is highly desirable but remains challenging. Herein, we report a bimetal-organic framework (bi-MOF) self-adjusted synthesis of support-free porous Co-N-C nanopolyhedron electrocatalysts by pyrolysis of a Zn/Co bi-MOF without any post-treatments. The presence of initial Zn forms a spatial isolation of Co that suppresses its sintering during pyrolysis, and Zn evaporation also promotes the surface area of the resultant catalysts. The composition, morphology, and hence ORR activity of Co-N-C could be tuned by the Zn/Co ratio. The optimal Co-N-C exhibited remarkable ORR activity with a half-wave potential of 0.871 V versus th...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
ransition metal–nitrogen–carbon materials are used as catalysts for the oxygen reduction reaction (O...
ransition metal–nitrogen–carbon materials are used as catalysts for the oxygen reduction reaction (O...
The development of low-cost catalysts with oxygen reduction reaction (ORR) activity superior to that...
The development of low-cost catalysts with oxygen reduction reaction (ORR) activity superior to that...
Replacing precious metal electrocatalysts with high-performance and low-cost nonprecious metal elect...
Hollow structure with hierarchical pore is benefit for the exposure of active sites, showing great a...
Rational design of porous structure is an effective way to fabricate the nonprecious metal electroca...
The development of a non-precious metal electrocatalyst (NPME) with a performance superior to commer...
The development of a non-precious metal electrocatalyst (NPME) with a performance superior to commer...
We report a nanostructured electrocatalyst engineered from molecular design and morphology evolution...
In this work we report a highly efficient Co based catalyst for the oxygen reduction reaction (ORR) ...
In this work, we reported the synthesis of a novel electro-catalyst composed of Fe and Co bimetallic...
Owing to their high theoretical energy density, environmental benign character and low cost, recharg...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
ransition metal–nitrogen–carbon materials are used as catalysts for the oxygen reduction reaction (O...
ransition metal–nitrogen–carbon materials are used as catalysts for the oxygen reduction reaction (O...
The development of low-cost catalysts with oxygen reduction reaction (ORR) activity superior to that...
The development of low-cost catalysts with oxygen reduction reaction (ORR) activity superior to that...
Replacing precious metal electrocatalysts with high-performance and low-cost nonprecious metal elect...
Hollow structure with hierarchical pore is benefit for the exposure of active sites, showing great a...
Rational design of porous structure is an effective way to fabricate the nonprecious metal electroca...
The development of a non-precious metal electrocatalyst (NPME) with a performance superior to commer...
The development of a non-precious metal electrocatalyst (NPME) with a performance superior to commer...
We report a nanostructured electrocatalyst engineered from molecular design and morphology evolution...
In this work we report a highly efficient Co based catalyst for the oxygen reduction reaction (ORR) ...
In this work, we reported the synthesis of a novel electro-catalyst composed of Fe and Co bimetallic...
Owing to their high theoretical energy density, environmental benign character and low cost, recharg...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
ransition metal–nitrogen–carbon materials are used as catalysts for the oxygen reduction reaction (O...
ransition metal–nitrogen–carbon materials are used as catalysts for the oxygen reduction reaction (O...