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Highly efficient nonprecious metal catalysts towards oxygen reduction reaction based on three-dimensional porous carbon nanostructures
Develo** a low cost, highly active, durable cathode towards an oxygen reduction reaction
(ORR) is one of the high-priority research directions for commercialization of low …
(ORR) is one of the high-priority research directions for commercialization of low …
Metal-organic framework derived carbon materials for electrocatalytic oxygen reactions: recent progress and future perspectives
The electrocatalytic oxygen reactions, ie oxygen reduction/evolution reactions (ORR/OER),
play a key role in electrochemical energy conversion and storage devices, including fuel …
play a key role in electrochemical energy conversion and storage devices, including fuel …
When cubic cobalt sulfide meets layered molybdenum disulfide: a core-shell system toward synergetic electrocatalytic water splitting.
A new class of Co9 S8@ MoS2 core-shell structures formed on carbon nanofibers
composed of cubic Co9 S8 as cores and layered MoS2 as shells is described. The core …
composed of cubic Co9 S8 as cores and layered MoS2 as shells is described. The core …
Mesoporous N-doped carbons prepared with thermally removable nanoparticle templates: an efficient electrocatalyst for oxygen reduction reaction
Thermally removable nanoparticle templates were used for the fabrication of self-supported
N-doped mesoporous carbons with a trace amount of Fe (Fe-N/C). Experimentally Fe-N/C …
N-doped mesoporous carbons with a trace amount of Fe (Fe-N/C). Experimentally Fe-N/C …
Fe–N-doped carbon capsules with outstanding electrochemical performance and stability for the oxygen reduction reaction in both acid and alkaline conditions
High surface area N-doped mesoporous carbon capsules with iron traces exhibit
outstanding electrocatalytic activity for the oxygen reduction reaction in both alkaline and …
outstanding electrocatalytic activity for the oxygen reduction reaction in both alkaline and …
[PDF][PDF] Self‐assembled Fe–N‐doped carbon nanotube aerogels with single‐atom catalyst feature as high‐efficiency oxygen reduction electrocatalysts
Chengzhou Zhu, Shaofang Fu, Junhua Song, Qiurong Shi, Dong Su, Mark H. Engelhard,
**aolin Li, Dongdong **ao, Dongsheng Li, Luis Estevez, Dan Du, and Yuehe Lin* typically …
**aolin Li, Dongdong **ao, Dongsheng Li, Luis Estevez, Dan Du, and Yuehe Lin* typically …
In Situ Self-Template Synthesis of Fe–N-Doped Double-Shelled Hollow Carbon Microspheres for Oxygen Reduction Reaction
Z Huang, H Pan, W Yang, H Zhou, N Gao, C Fu, S Li… - ACS …, 2018 - ACS Publications
Herein, we reported a special Fe–N-doped double-shelled hollow carbon microsphere (Fe–
N-DSC) which was prepared by a facile, in situ polymerization followed by pyrolysis. With …
N-DSC) which was prepared by a facile, in situ polymerization followed by pyrolysis. With …
Atomically Dispersed Fe‐Nx/C Electrocatalyst Boosts Oxygen Catalysis via a New Metal‐Organic Polymer Supramolecule Strategy
The development of high‐performance oxygen reduction reaction (ORR) catalysts derived
from non‐Pt group metals (non‐PGMs) is urgent for the wide applications of proton …
from non‐Pt group metals (non‐PGMs) is urgent for the wide applications of proton …
Sub‐50 nm iron–nitrogen‐doped hollow carbon sphere‐encapsulated iron carbide nanoparticles as efficient oxygen reduction catalysts
Abstract Sub‐50 nm iron–nitrogen‐doped hollow carbon sphere‐encapsulated iron carbide
nanoparticles (Fe3C‐Fe, N/C) are synthesized by using a triblock copolymer of poly (styrene …
nanoparticles (Fe3C‐Fe, N/C) are synthesized by using a triblock copolymer of poly (styrene …
[PDF][PDF] In situ polymer graphenization ingrained with nanoporosity in a nitrogenous electrocatalyst boosting the performance of polymer-electrolyte-membrane fuel …
DOI: 10.1002/adma. 201604456 class of heteroatom polymer derived catalysts with
improved activity and durability in half-cell and fuel-cell tests.[9] Despite these sign of …
improved activity and durability in half-cell and fuel-cell tests.[9] Despite these sign of …