An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction.
about
High Performance Heteroatoms Quaternary-doped Carbon Catalysts Derived from Shewanella Bacteria for Oxygen Reduction.A rational synthesis of hierarchically porous, N-doped carbon from Mg-based MOFs: understanding the link between nitrogen content and oxygen reduction electrocatalysis.A Bifunctional Highly Efficient FeNx /C Electrocatalyst.Superiority of boron, nitrogen and iron ternary doped carbonized graphene oxide-based catalysts for oxygen reduction in microbial fuel cells.Conjugated microporous polymers with dimensionality-controlled heterostructures for green energy devices.A mesoporous tin phosphate-graphene oxide hybrid toward the oxygen reduction reaction.Layer-separated MoS2 bearing reduced graphene oxide formed by an in situ intercalation-cum-anchoring route mediated by Co(OH)2 as a Pt-free electrocatalyst for oxygen reduction.Nitrogen-Doped Carbon Vesicles with Dual Iron-Based Sites for Efficient Oxygen Reduction.Platanus hispanica-inspired design of Co-carbon nanotube frameworks through chemical vapor deposition: a highly integrated hierarchical electrocatalyst for oxygen reduction reactions.Enhanced Intrinsic Catalytic Activity of λ-MnO2 by Electrochemical Tuning and Oxygen Vacancy Generation.Aminothiazole-derived N,S,Fe-doped graphene nanosheets as high performance electrocatalysts for oxygen reduction.(Fe,Co)@nitrogen-doped graphitic carbon nanocubes derived from polydopamine-encapsulated metal-organic frameworks as a highly stable and selective non-precious oxygen reduction electrocatalyst.Constructing B and N separately co-doped carbon nanocapsules-wrapped Fe/Fe3C for oxygen reduction reaction with high current density.Dicobalt phosphide nanoparticles encased in boron and nitrogen co-doped graphitic layers as novel non-precious metal oxygen reduction electrocatalysts in alkaline media.Chitosan Intercalated Metal Organic Gel as a Green Precursor of Fe Entrenched and Fe Distributed N-Doped Mesoporous Graphitic Carbon for Oxygen Reduction ReactionA Generic Conversion Strategy: From 2D Metal Carbides (MxCy) to M-Self-Doped Graphene toward High-Efficiency Energy Applications
P2860
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P2860
An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction.
description
2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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name
An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction.
@en
An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction.
@nl
type
label
An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction.
@en
An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction.
@nl
prefLabel
An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction.
@en
An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction.
@nl
P2860
P356
P1476
An Fe/N co-doped graphitic carbon bulb for high-performance oxygen reduction reaction
@en
P2093
Ruifeng Zhou
P2860
P304
P356
10.1039/C5CC00995B
P407
P577
2015-05-01T00:00:00Z