In Situ Implanting ZrW 2 O 7 (OH) 2 (H 2 O) 2 Nanorods into Hierarchical Functionalized Metal-Organic Framework via Solvent-Free Approach for Upgrading Catalytic Performance

Host-guest catalyst provides new opportunities for targeted applications and the development of new strategies for preparing host-guest catalysts is highly desired. Herein, an in situ solvent-free approach is developed for implanting ZrW O (OH) (H O) nanorods (ZrW-NR) in nitro-functionalized UiO-66(...

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Veröffentlicht in:Small (Weinheim an der Bergstrasse, Germany) Germany), 2024-08, Vol.20 (32), p.e2311249
Hauptverfasser: Ye, Gan, Shi, Guangming, Wang, Hanlu, Zeng, Xingye, Wu, Lei, Zhou, Jun, Zhang, Qiuli, Wei, Jinshan, Li, Zhiming, Nie, Long, Wang, Jin
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Sprache:eng
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Zusammenfassung:Host-guest catalyst provides new opportunities for targeted applications and the development of new strategies for preparing host-guest catalysts is highly desired. Herein, an in situ solvent-free approach is developed for implanting ZrW O (OH) (H O) nanorods (ZrW-NR) in nitro-functionalized UiO-66(Zr) (UiO-66(Zr)-NO ) with hierarchical porosity, and the encapsulation of ZrW-NR enables the as-prepared host-guest catalyst remarkably enhanced catalytic performance for both for oxidative desulfurization (ODS) and acetalization reactions. ZrW-NR@UiO-66(Zr)-NO can eliminate 500 ppm sulfur within 9 min at 40 °C in ODS, and can transform 5.6 mmol benzaldehyde after 3 min at room temperature in acetalization reaction. Its turnover frequencies reach 72.3 h at 40 °C for ODS which is 33.4 times higher than UiO-66(Zr)-NO , and 28140 h for acetalization which is the highest among previous reports. Density functional theory calculation result indicates that the W sites in ZrW-NR can decompose H O to W -peroxo intermediates that contribute to catalytic activity for the ODS reaction. This work opens a new solvent-free approach for preparing MOFs-based host-guest catalysts to upgrade their redox and acid performance.
ISSN:1613-6810
1613-6829
DOI:10.1002/smll.202311249