The controllable synthesis of urchin-shaped hierarchical superstructure MOFs with high catalytic activity and stability
Article
Wang, Zhanke, Ge, Lei, Zhang, Guangxu, Chen, Yao, Gao, Rongrong, Wang, Hao and Zhu, Zhonghua. 2021. "The controllable synthesis of urchin-shaped hierarchical superstructure MOFs with high catalytic activity and stability." Chemical Communications. 57 (70), pp. 8758-8761. https://doi.org/10.1039/d1cc03547a
Article Title | The controllable synthesis of urchin-shaped hierarchical superstructure MOFs with high catalytic activity and stability |
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ERA Journal ID | 1319 |
Article Category | Article |
Authors | Wang, Zhanke (Author), Ge, Lei (Author), Zhang, Guangxu (Author), Chen, Yao (Author), Gao, Rongrong (Author), Wang, Hao (Author) and Zhu, Zhonghua (Author) |
Journal Title | Chemical Communications |
Journal Citation | 57 (70), pp. 8758-8761 |
Number of Pages | 4 |
Year | 2021 |
Publisher | The Royal Society of Chemistry |
Place of Publication | Cambridge, United Kingdom |
ISSN | 1359-7345 |
1364-548X | |
Digital Object Identifier (DOI) | https://doi.org/10.1039/d1cc03547a |
Web Address (URL) | https://pubs.rsc.org/en/content/articlelanding/2021/cc/d1cc03547a |
Abstract | A novel dissolution–crystallization-attachment strategy was developed to synthesize urchin-shaped superstructure metal–organic frameworks (MOFs) with self-assembled one-dimensional nanorods. The superstructure MOFs not only inherited the high activity of nanosized MOFs but also displayed the high stability of microsized MOFs. |
ANZSRC Field of Research 2020 | 340301. Inorganic materials (incl. nanomaterials) |
400408. Reaction engineering (excl. nuclear reactions) | |
Public Notes | Files associated with this item cannot be displayed due to copyright restrictions. |
Byline Affiliations | University of Queensland |
Centre for Future Materials | |
Wuhan University of Technology, China | |
Institution of Origin | University of Southern Queensland |
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