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One-Pot Synthesis of CHA/ERI-Type Zeolite Intergrowth from a Single Multiselective Organic Structure-Directing Agent
Stockholm University, Faculty of Science, Department of Materials and Environmental Chemistry (MMK).
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Number of Authors: 112024 (English)In: ACS Applied Materials and Interfaces, ISSN 1944-8244, E-ISSN 1944-8252, Vol. 16, no 12, p. 14661-14668Article in journal (Refereed) Published
Abstract [en]

We report the one-pot synthesis of a chabazite (CHA)/erionite (ERI)-type zeolite intergrowth structure characterized by adjustable extents of intergrowth enrichment and Si/Al molar ratios. This method utilizes readily synthesizable 6-azaspiro[5.6]dodecan-6-ium as the exclusive organic structure-directing agent (OSDA) within a potassium-dominant environment. High-throughput simulations were used to accurately determine the templating energy and molecular shape, facilitating the selection of an optimally biselective OSDA from among thousands of prospective candidates. The coexistence of the crystal phases, forming a distinct structure comprising disk-like CHA regions bridged by ERI-rich pillars, was corroborated via rigorous powder X-ray diffraction and integrated differential-phase contrast scanning transmission electron microscopy (iDPC S/TEM) analyses. iDPC S/TEM imaging further revealed the presence of single offretite layers dispersed within the ERI phase. The ratio of crystal phases between CHA and ERI in this type of intergrowth could be varied systematically by changing both the OSDA/Si and K/Si ratios. Two intergrown zeolite samples with different Si/Al molar ratios were tested for the selective catalytic reduction (SCR) of NOx with NH3, showing competitive catalytic performance and hydrothermal stability compared to that of the industry-standard commercial NH3-SCR catalyst, Cu-SSZ-13, prevalent in automotive applications. Collectively, this work underscores the potential of our approach for the synthesis and optimization of adjustable intergrown zeolite structures, offering competitive alternatives for key industrial processes.

Place, publisher, year, edition, pages
2024. Vol. 16, no 12, p. 14661-14668
Keywords [en]
small-pore zeolites, zeolite intergrowth, erionite(ERI), chabazite (CHA), selective catalytic reduction(SCR) of NO x
National Category
Nano Technology Materials Engineering
Identifiers
URN: urn:nbn:se:su:diva-227743DOI: 10.1021/acsami.3c15810ISI: 001184857300001PubMedID: 38477906Scopus ID: 2-s2.0-85187690764OAI: oai:DiVA.org:su-227743DiVA, id: diva2:1847087
Available from: 2024-03-26 Created: 2024-03-26 Last updated: 2024-04-29Bibliographically approved

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Ikonnikova, EvgeniiaWillhammar, Tom

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Ikonnikova, EvgeniiaWillhammar, TomMoliner, Manuel
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Department of Materials and Environmental Chemistry (MMK)Inorganic and Structural Chemistry
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Nano TechnologyMaterials Engineering

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