Facile Morphology and Porosity Regulation of Zeolite ZSM-5 Mesocrystals with Synergistically Enhanced Catalytic Activity and Shape Selectivity

The morphology and mesoporosity of zeolite are two vital properties to determine its performance in diverse applications involving adsorption and catalysis; while it remains a big challenge for the synthesis and regulation of zeolites with exceptional morphology/porosity only through inorganic-ions-...

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Published in:Nanomaterials
Main Authors: Feng Lin, Zhaoqi Ye, Lingtao Kong, Peng Liu, Yahong Zhang, Hongbin Zhang, Yi Tang
Format: Article
Language:English
Published: MDPI AG 2022-05-01
Subjects:
Online Access:https://www.mdpi.com/2079-4991/12/9/1601
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author Feng Lin
Zhaoqi Ye
Lingtao Kong
Peng Liu
Yahong Zhang
Hongbin Zhang
Yi Tang
author_facet Feng Lin
Zhaoqi Ye
Lingtao Kong
Peng Liu
Yahong Zhang
Hongbin Zhang
Yi Tang
author_sort Feng Lin
collection DOAJ
container_title Nanomaterials
description The morphology and mesoporosity of zeolite are two vital properties to determine its performance in diverse applications involving adsorption and catalysis; while it remains a big challenge for the synthesis and regulation of zeolites with exceptional morphology/porosity only through inorganic-ions-based modification. Herein, by simply optimizing the alkali metal type (K<sup>+</sup> or Na<sup>+</sup>), as well as alkali/water ratio and crystallization temperature, the zeolite ZSM-5 mesocrystals with diverse mesostructures are simply and controllably prepared via fine-tuning the crystallization mechanism in an organotemplate-free, ions-mediated seed-assisted system. Moreover, the impacts of these key parameters on the evolution of seed crystals, the development and assembly behavior of aluminosilicate species and the solution-phase process during zeolite crystallization are investigated by means of directional etching in NH<sub>4</sub>F or NaOH solutions. Except for the morphology/mesoporosity modulation, their physical and chemical properties, such as particle size, microporosity, Si/Al ratio and acidity, can be well maintained at a similar level. As such, the <i>p</i>/<i>o</i>-xylene adsorption and catalytic performance of <i>o</i>-xylene isomerization are used to exhaustively evaluate the synergistically enhanced catalytic activity and shape selectivity of the obtained products. This work demonstrates the possibility of effectively constructing novel zeolite mesostructures by simply altering parameters on simple ions-controlled crystallization and provides good models to inspect the impacts of mesoporosity or morphology on their catalytic performances.
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spelling doaj-art-bdbd6f76f9cb4fbe8f0fddba341bedca2025-08-19T23:23:26ZengMDPI AGNanomaterials2079-49912022-05-01129160110.3390/nano12091601Facile Morphology and Porosity Regulation of Zeolite ZSM-5 Mesocrystals with Synergistically Enhanced Catalytic Activity and Shape SelectivityFeng Lin0Zhaoqi Ye1Lingtao Kong2Peng Liu3Yahong Zhang4Hongbin Zhang5Yi Tang6Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and Laboratory of Advanced Materials, Fudan University, Shanghai 200433, ChinaDepartment of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and Laboratory of Advanced Materials, Fudan University, Shanghai 200433, ChinaDepartment of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and Laboratory of Advanced Materials, Fudan University, Shanghai 200433, ChinaInstitute for Preservation and Conservation of Chinese Ancient Books, Fudan University Library, Fudan University, Shanghai 200433, ChinaDepartment of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and Laboratory of Advanced Materials, Fudan University, Shanghai 200433, ChinaInstitute for Preservation and Conservation of Chinese Ancient Books, Fudan University Library, Fudan University, Shanghai 200433, ChinaDepartment of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and Laboratory of Advanced Materials, Fudan University, Shanghai 200433, ChinaThe morphology and mesoporosity of zeolite are two vital properties to determine its performance in diverse applications involving adsorption and catalysis; while it remains a big challenge for the synthesis and regulation of zeolites with exceptional morphology/porosity only through inorganic-ions-based modification. Herein, by simply optimizing the alkali metal type (K<sup>+</sup> or Na<sup>+</sup>), as well as alkali/water ratio and crystallization temperature, the zeolite ZSM-5 mesocrystals with diverse mesostructures are simply and controllably prepared via fine-tuning the crystallization mechanism in an organotemplate-free, ions-mediated seed-assisted system. Moreover, the impacts of these key parameters on the evolution of seed crystals, the development and assembly behavior of aluminosilicate species and the solution-phase process during zeolite crystallization are investigated by means of directional etching in NH<sub>4</sub>F or NaOH solutions. Except for the morphology/mesoporosity modulation, their physical and chemical properties, such as particle size, microporosity, Si/Al ratio and acidity, can be well maintained at a similar level. As such, the <i>p</i>/<i>o</i>-xylene adsorption and catalytic performance of <i>o</i>-xylene isomerization are used to exhaustively evaluate the synergistically enhanced catalytic activity and shape selectivity of the obtained products. This work demonstrates the possibility of effectively constructing novel zeolite mesostructures by simply altering parameters on simple ions-controlled crystallization and provides good models to inspect the impacts of mesoporosity or morphology on their catalytic performances.https://www.mdpi.com/2079-4991/12/9/1601zeolite ZSM-5seed-assisted synthesismesocrystalsynthesis parameters and crystallizationchemical etchingxylene adsorption/isomerization
spellingShingle Feng Lin
Zhaoqi Ye
Lingtao Kong
Peng Liu
Yahong Zhang
Hongbin Zhang
Yi Tang
Facile Morphology and Porosity Regulation of Zeolite ZSM-5 Mesocrystals with Synergistically Enhanced Catalytic Activity and Shape Selectivity
zeolite ZSM-5
seed-assisted synthesis
mesocrystal
synthesis parameters and crystallization
chemical etching
xylene adsorption/isomerization
title Facile Morphology and Porosity Regulation of Zeolite ZSM-5 Mesocrystals with Synergistically Enhanced Catalytic Activity and Shape Selectivity
title_full Facile Morphology and Porosity Regulation of Zeolite ZSM-5 Mesocrystals with Synergistically Enhanced Catalytic Activity and Shape Selectivity
title_fullStr Facile Morphology and Porosity Regulation of Zeolite ZSM-5 Mesocrystals with Synergistically Enhanced Catalytic Activity and Shape Selectivity
title_full_unstemmed Facile Morphology and Porosity Regulation of Zeolite ZSM-5 Mesocrystals with Synergistically Enhanced Catalytic Activity and Shape Selectivity
title_short Facile Morphology and Porosity Regulation of Zeolite ZSM-5 Mesocrystals with Synergistically Enhanced Catalytic Activity and Shape Selectivity
title_sort facile morphology and porosity regulation of zeolite zsm 5 mesocrystals with synergistically enhanced catalytic activity and shape selectivity
topic zeolite ZSM-5
seed-assisted synthesis
mesocrystal
synthesis parameters and crystallization
chemical etching
xylene adsorption/isomerization
url https://www.mdpi.com/2079-4991/12/9/1601
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