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September 10, 2025Angewandte Chemie International Edition6 citationsOpen Access

Simultaneous Modulation of Mesoporosity and Al Siting for Superior Performance Zeolite Catalyst in Ethylene Dehydroaromatization to Aromatics

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YSYanfeng ShenZQZhengxing QinABAntoine Beuque

Key Points

  • Z F shows a 1.8-fold increase in turnover frequency compared to Z P during ethylene transformation at 973K.
  • Despite a 39% reduction in Brønsted acid sites, Z F excels thanks to introduced mesoporosity, enhancing catalytic performance.
  • Site-specific analysis indicates channel intersection BAS lead to a significantly higher turnover frequency than channel sites.
  • The method combines porosity and Al siting adjustments, calling attention to their synergistic benefits in zeolite catalyst design.

Abstract

Abstract Porosity and Al siting are key levers for optimizing zeolite catalysts, yet they are often addressed independently due to the lack of effective integrated tuning strategies. Herein, we report an integrative methodology for preparing hierarchical zeolite (Z F ) with interconnected mesostructures and tunable Al siting, achieved via regioselective dissolution of Al‐rich domains by presetting accessible and inaccessible zones within parent zeolite (Z P ). Remarkably, ∼60% of the framework channels’ Al atoms were selectively removed without impairing the channel intersections’ Al atoms. Despite a 39% reduction in Brønsted acid sites (BAS), Z F exhibits a 1.8‐fold higher turnover frequency (TOF) than Z P during ethylene transformation at 973K, attributable to the introduction of mesoporosity. Notably, site‐specific 31 P NMR analysis reveals that BAS located at channel intersections exhibits a TOF of 516 h −1 , which is 13 times higher than that of sites within the channels (40 h −1 ). The hierarchical zeolite also demonstrates superior durability and enhanced aromatic selectivity compared to Z P . These results highlight the synergistic benefits of simultaneously tuning porosity and Al siting, offering a new paradigm for the rational design of high‐performance zeolite catalysts and providing deeper insights into the interplay between structure and function in zeolite‐based catalysis.

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Cite This Study

Shen et al. (2025) studied this question.

synapsesocial.com/papers/68c1a13354b1d3bfb60dc87chttps://doi.org/10.1002/anie.202508909
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