Two-step synthesis of Ti-rich surface TS-1 with controllable microenvironment of titanium species

It is significant to improve the catalytic activity of TS-1 by increasing the content of framework titanium and enhancing the accessibility of active titanium sites. However, developing a simple and economical strategy for modulating the coordination environments and the spatial distribution of tita...

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Veröffentlicht in:Applied catalysis. A, General General, 2023-02, Vol.651, p.119023, Article 119023
Hauptverfasser: Jiang, Linfang, Wang, Fumin, Zhai, Yi, Wang, Kaiwei, Xu, Zhibo, Zhang, Xu, Li, Mengyue, Li, Mengyao, Zhang, Xubin
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Sprache:eng
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Zusammenfassung:It is significant to improve the catalytic activity of TS-1 by increasing the content of framework titanium and enhancing the accessibility of active titanium sites. However, developing a simple and economical strategy for modulating the coordination environments and the spatial distribution of titanium species is still a challenge. Here, we constructed anatase-free TS-1 with abundant framework titanium species and Ti-rich surface by a simple two-step crystallization strategy. The effects of the crystallization temperature and time of the first stage on the properties of zeolite have been investigated in detail. The TS-1 with a Ti-rich surface showed a higher conversion of phenol and selectivity to dihydroxylbenzene in phenol hydroxylation reaction compared with traditional TS-1, and it still remained the superior catalytic performance after five cycles. The novel strategy will provide a new perspective for the construction of TS-1 with controllable active Ti species. [Display omitted] •The framework Ti content and the active Ti sites on the external surface of TS-1 were increased.•The temperature and time in the first stage have an important impact on the synthesis process.•The TS-1 zeolite prepared has good accessibility of active sites.•The novel strategy provides a new perspective for preparing other metal-doped zeolite with excellent catalytic activity.
ISSN:0926-860X
1873-3875
DOI:10.1016/j.apcata.2023.119023