Facile synthesis of nitrogen doped reduced graphene oxide as a superior metal-free catalyst for oxidation
Article
Sun, Hongqi, Wang, Yuxian, Liu, Shizhen, Ge, Lei, Wang, Li, Zhu, Zhonghua and Wang, Shaobin. 2013. "Facile synthesis of nitrogen doped reduced graphene oxide as a superior metal-free catalyst for oxidation." Chemical Communications. 49 (85), pp. 9914-9916. https://doi.org/10.1039/C3CC43401J
| Article Title | Facile synthesis of nitrogen doped reduced graphene oxide as a superior metal-free catalyst for oxidation |
|---|---|
| ERA Journal ID | 1319 |
| Article Category | Article |
| Authors | Sun, Hongqi (Author), Wang, Yuxian (Author), Liu, Shizhen (Author), Ge, Lei (Author), Wang, Li (Author), Zhu, Zhonghua (Author) and Wang, Shaobin (Author) |
| Journal Title | Chemical Communications |
| Journal Citation | 49 (85), pp. 9914-9916 |
| Number of Pages | 3 |
| Year | 2013 |
| Publisher | The Royal Society of Chemistry |
| Place of Publication | United Kingdom |
| ISSN | 1359-7345 |
| 1364-548X | |
| Digital Object Identifier (DOI) | https://doi.org/10.1039/C3CC43401J |
| Web Address (URL) | http://pubs.rsc.org/en/Content/ArticleLanding/2013/CC/c3cc43401j#!divAbstract |
| Abstract | Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as a superior metal-free catalyst for activation of peroxymonosulfate. Codoping with boron would further enhance the catalytic activity and the stability, providing a promising green material for environmental remediation. |
| Keywords | boron; graphene oxide; nitrogen; peroxysulfuric acid; sulfate; unclassified drug; article; catalyst; chemical structure; oxidation; synthesis |
| ANZSRC Field of Research 2020 | 401605. Functional materials |
| Public Notes | Files associated with this item cannot be displayed due to copyright restrictions. |
| Byline Affiliations | Curtin University |
| University of Queensland | |
| Institution of Origin | University of Southern Queensland |
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