Tailored Alkyl-Imidazolium Templating Synthesis of Extra-Large-Pore Germanosilicate Zeolite Itt as Baeyer-Villiger Oxidation Catalyst

48 Pages Posted: 19 Sep 2022

See all articles by Xiaozhe Hou

Xiaozhe Hou

Beijing University of Chemical Technology

Zhenjiang Yao

Beijing University of Chemical Technology

Haojie Li

Beijing University of Chemical Technology

Miao Wang

Beijing University of Chemical Technology

Ying Wei

Beijing University of Chemical Technology

Ling Zhang

affiliation not provided to SSRN

Yan Liang

Beijing University of Chemical Technology

Junjun Qiao

Beijing University of Chemical Technology

Jingbo Jia

Beijing University of Chemical Technology

Runduo Zhang

Beijing University of Chemical Technology

Abstract

Extra-large-pore germanosilicate zeolite ITT was prepared with several structure-tailored alkyl-substituted imidazolium templates. The effect of alkyl chain length and substitution number of template on zeolite topology structure was studied with the variation of synthesis Si/Ge ratio. 1-hexyl-3-methyl-imidazaolium (1H3M) exhibited superior templating effect on the formation of ITT structure within the widest range of synthesis Si/Ge molar ratio of about 2~6. 1H→13C CP/MAS NMR, TGA and molecular simulation results revealed that two 1H3M was occluded in the 18-ring channels per unit cell, presenting the lowest interaction energy with framework. With the combination of XRD, SEM, EDS, ICP, 29Si, 19F MAS NMR, FTIR, N2 physisorption results, it was found that the increase of synthesis Si/Ge ratio improved framework Si/Ge ratio within d4r unit to a certain degree, and in the meantime resulted in the decrease of zeolite crystallinity with the formation of some amorphous phase. ITT showed better Lewis-acid catalytic activity and lactone selectivity for B-V oxidation of 2-adamantanone than BEC, the best germanosilicate zeolite ever reported. The excellent catalytic performance was ascribed to the presence of 18-ring channels in ITT, which facilitated the diffusion of bulky ketone substrate and lactone product. The structure stability of ITT during the reaction was evaluated with the use of either aqueous H2O2 or non-aqueous tert-butyl hydroperoxide (TBHP) as oxidant.

Keywords: Extra-large-pore, Germanosilicate Zeolite, ITT structure, Imidazolium, Baeyer-Villiger Oxidation

Suggested Citation

Hou, Xiaozhe and Yao, Zhenjiang and Li, Haojie and Wang, Miao and Wei, Ying and Zhang, Ling and Liang, Yan and Qiao, Junjun and Jia, Jingbo and Zhang, Runduo, Tailored Alkyl-Imidazolium Templating Synthesis of Extra-Large-Pore Germanosilicate Zeolite Itt as Baeyer-Villiger Oxidation Catalyst. Available at SSRN: https://ssrn.com/abstract=4223216 or http://dx.doi.org/10.2139/ssrn.4223216

Xiaozhe Hou

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

Zhenjiang Yao

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

Haojie Li

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

Miao Wang

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

Ying Wei (Contact Author)

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

Ling Zhang

affiliation not provided to SSRN ( email )

Yan Liang

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

Junjun Qiao

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

Jingbo Jia

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

Runduo Zhang

Beijing University of Chemical Technology ( email )

15 N. 3rd Ring Rd E
Chaoyang, Beijing, 201204
China

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