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Nitrogen and Sulfur Co-doping of 3D Hollow-structured Carbon Spheres As an Efficient and Stable Metal Free Catalyst for the Oxygen Reduction Reaction

Overview
Journal Nanoscale
Specialty Biotechnology
Date 2016 Nov 9
PMID 27824191
Citations 2
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Abstract

Three-dimensional, hollow-structured carbon sphere nanocomposites (N,S-hcs) doped with nitrogen and sulfur were prepared using a soft template approach followed by a high-temperature treatment. The synthesized N,S-hcs nanomaterials exhibited favourable catalytic activity for the oxygen reduction reaction (ORR) compared to carbon spheres doped solely with nitrogen (N-hcs), polypyrrole (PPY) solid nanoparticles and irregular fragments of polyaniline (PAN). These results demonstrated the co-doping of N/S and the relatively large surface area of the mesoporous carbon structure that enhanced the catalytic activity of the resulting material. Notably, the prepared N,S-hcs electrocatalysts provided four electron oxygen reduction selectivity, long-term durability and high resistance to methanol poisoning, all of which represented improvements over the conventional Pt/C electrocatalyst. The progress represented by this reported work is of great importance in the development of outstanding non-metal based electrocatalysts for the fuel cell industry.

Citing Articles

Iron Sulfide Nanoparticles Embedded Into a Nitrogen and Sulfur Co-doped Carbon Sphere as a Highly Active Oxygen Reduction Electrocatalyst.

Wang H, Qiu X, Wang W, Jiang L, Liu H Front Chem. 2020; 7:855.

PMID: 31921777 PMC: 6920104. DOI: 10.3389/fchem.2019.00855.


Nitrogen-Doped Ketjenblack Carbon Supported CoO Nanoparticles as a Synergistic Electrocatalyst for Oxygen Reduction Reaction.

Cheng G, Liu G, Liu P, Chen L, Han S, Han J Front Chem. 2019; 7:766.

PMID: 31867304 PMC: 6904301. DOI: 10.3389/fchem.2019.00766.