We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electrocatalysts to substitute valuable platinum (Pt)-based materials toward oxygen reduction reaction (ORR), a key reaction in metal-air batteries and fuel cells. In brief, cobalt ions are firstly double-coordinated with proportionate 2-methylimidazole (2-MeIm) and benzimidazole (BIm) to obtain drum-like zeolitic imidazolate frameworks (D-ZIFs), which are then carbonized to output the final Co, N co-doped porous carbon (Co-N-PCD) catalyst inheriting the drum-like morphology of D-ZIFs. The Co-N-PCD is featured by mesopores and exhibits superb electrocatalytic behavior for ORR. Impressively, the half wave potential of Co-N-PCD catalysts is 0.886 V wit...
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...
Transition metal-doped carbon catalysts are expected to replace noble metal catalysts for the oxygen...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
It is an urgent demand to develop cost-effective and efficient non-noble metal electrocatalysts for ...
It is an urgent demand to develop cost-effective and efficient non-noble metal electrocatalysts for ...
Although traditional three-dimensional (3D) zeolitic-imidazolate framework (ZIF) particles have been...
We report a purposely designed route for the synthesis of a promising carbon-based electrocatalyst f...
Although traditional three-dimensional (3D) zeolitic-imidazolate framework (ZIF) particles have been...
The advancement of cost-effective, efficient, and durable catalysts to replace high cost Pt-based el...
Mesoporous carbon materials were prepared using zeolitic imidazolate framework (ZIF-67) as a support...
The development of low-cost catalysts with oxygen reduction reaction (ORR) activity superior to that...
Hollow structure with hierarchical pore is benefit for the exposure of active sites, showing great a...
© 2021 Wiley-VCH GmbHThe design of active sites plays an important role in developing highly active ...
Metal N-doped carbons (M–N–C) and specifically cobalt-based N-doped carbons (Co–N–C) have attracted ...
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...
Transition metal-doped carbon catalysts are expected to replace noble metal catalysts for the oxygen...
We herein propose a dual ligand coordination strategy for deriving puissant non-noble metal electroc...
It is an urgent demand to develop cost-effective and efficient non-noble metal electrocatalysts for ...
It is an urgent demand to develop cost-effective and efficient non-noble metal electrocatalysts for ...
Although traditional three-dimensional (3D) zeolitic-imidazolate framework (ZIF) particles have been...
We report a purposely designed route for the synthesis of a promising carbon-based electrocatalyst f...
Although traditional three-dimensional (3D) zeolitic-imidazolate framework (ZIF) particles have been...
The advancement of cost-effective, efficient, and durable catalysts to replace high cost Pt-based el...
Mesoporous carbon materials were prepared using zeolitic imidazolate framework (ZIF-67) as a support...
The development of low-cost catalysts with oxygen reduction reaction (ORR) activity superior to that...
Hollow structure with hierarchical pore is benefit for the exposure of active sites, showing great a...
© 2021 Wiley-VCH GmbHThe design of active sites plays an important role in developing highly active ...
Metal N-doped carbons (M–N–C) and specifically cobalt-based N-doped carbons (Co–N–C) have attracted ...
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...
Transition metal-doped carbon catalysts are expected to replace noble metal catalysts for the oxygen...