© 2020 American Chemical Society. Nitrogen-doped carbon catalysts prepared from amino-functionalized metal-organic frameworks [amino-MIL-101(Al)] were investigated for the oxygen-reduction reaction (ORR) with special emphasis on elucidating the role of different nitrogen species (e.g., pyridinic, pyrrolic, and quaternary N) as active catalytic sites. Careful optimization of pyrolysis temperature of the amino-MIL-101(Al) leveraged the synthesis of the catalysts with or without quaternary N functionalities. This allowed us to investigate the type(s) of N species responsible for the ORR catalysis and thus address the conflicting results reported so far regarding the pyridinic and/or quaternary N as active sites for ORR catalysis via four-elect...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
The design of advanced N-doped carbon materials towards oxygen reduction reaction (ORR) catalysis is...
The design of advanced N-doped carbon materials towards oxygen reduction reaction (ORR) catalysis is...
N-doped carbon materials have been considered one of the most promising options for the replacement ...
Nitrogen–carbon (N–C) species is a potential electrocatalyst for oxygen reduction reaction (ORR) in ...
The critical issues of fossil fuel consumption and greenhouse gas emission urge people to develop gr...
Single-atom catalysts with full utilization of metal centers can bridge the gap between molecular an...
Single-atom catalysts with full utilization of metal centers can bridge the gap between molecular an...
Heat treating nitrogen-doped multiwalled carbon nanotubes containing up to six different types of ni...
Development and optimization of non-platinum group metal (non-PGM) electrocatalysts for oxygen reduc...
The Metal-free nitrogen-doped carbons represent an emerging low-cost nonprecious electrocatalyst for...
The Metal-free nitrogen-doped carbons represent an emerging low-cost nonprecious electrocatalyst for...
Nitrogen-doped carbons are promising candidates for replacing platinum catalysts in fuel cell electr...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
The design of advanced N-doped carbon materials towards oxygen reduction reaction (ORR) catalysis is...
The design of advanced N-doped carbon materials towards oxygen reduction reaction (ORR) catalysis is...
N-doped carbon materials have been considered one of the most promising options for the replacement ...
Nitrogen–carbon (N–C) species is a potential electrocatalyst for oxygen reduction reaction (ORR) in ...
The critical issues of fossil fuel consumption and greenhouse gas emission urge people to develop gr...
Single-atom catalysts with full utilization of metal centers can bridge the gap between molecular an...
Single-atom catalysts with full utilization of metal centers can bridge the gap between molecular an...
Heat treating nitrogen-doped multiwalled carbon nanotubes containing up to six different types of ni...
Development and optimization of non-platinum group metal (non-PGM) electrocatalysts for oxygen reduc...
The Metal-free nitrogen-doped carbons represent an emerging low-cost nonprecious electrocatalyst for...
The Metal-free nitrogen-doped carbons represent an emerging low-cost nonprecious electrocatalyst for...
Nitrogen-doped carbons are promising candidates for replacing platinum catalysts in fuel cell electr...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...