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Journal ArticleDOI

Advances in Catalytic Applications of Zeolite-Supported Metal Catalysts.

TLDR
A comprehensive review of the state-of-the-art achievements in catalytic applications of zeolite-supported metal catalysts is presented in this paper, mainly focusing on hydrogenation reactions.
Abstract
Zeolites possessing large specific surface areas, ordered micropores, and adjustable acidity/basicity have emerged as ideal supports to immobilize metal species with small sizes and high dispersities. In recent years, the zeolite-supported metal catalysts have been widely used in diverse catalytic processes, showing excellent activity, superior thermal/hydrothermal stability, and unique shape-selectivity. In this review, a comprehensive summary of the state-of-the-art achievements in catalytic applications of zeolite-supported metal catalysts are presented for important heterogeneous catalytic processes in the last five years, mainly including 1) the hydrogenation reactions (e.g., CO/CO2 hydrogenation, hydrogenation of unsaturated compounds, and hydrogenation of nitrogenous compounds); 2) dehydrogenation reactions (e.g., alkane dehydrogenation and dehydrogenation of chemical hydrogen storage materials); 3) oxidation reactions (e.g., CO oxidation, methane oxidation, and alkene epoxidation); and 4) other reactions (e.g., hydroisomerization reaction and selective catalytic reduction of NOx with ammonia reaction). Finally, some current limitations and future perspectives on the challenge and opportunity for this subject are pointed out. It is believed that this review will inspire more innovative research on the synthesis and catalysis of zeolite-supported metal catalysts and promote their future developments to meet the emerging demands for practical applications.

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Citations
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Journal ArticleDOI

Metal Sites in Zeolites: Synthesis, Characterization, and Catalysis.

TL;DR: The metal-in-zeolite composites as mentioned in this paper have experienced rapid development in heterogeneous catalysis, owing to the combination of the merits of both active metal sites and zeolite intrinsic properties.
Journal ArticleDOI

Single Atom Catalysts for Selective Methane Oxidation to Oxygenates.

TL;DR: In this article , a review of single atom catalysts (SACs) for the selective oxidation of CH4 to C1-2 liquid oxygenates is presented, where the chemical nature of catalytic sites, effects of metal-support interaction, and stabilization of intermediate species on catalysts to minimize overoxidation are thoroughly discussed with a forward-looking perspective.
Journal ArticleDOI

Enhanced Catalytic Performance through In Situ Encapsulation of Ultrafine Ru Clusters within a High-Aluminum Zeolite

TL;DR: In this paper , Ru@H-ZSM-5 showed an enhanced activity and stability for the crucial hydrodeoxygenation (HDO) of phenol to cyclohexane in biomass valorization.
Journal ArticleDOI

Synergistic catalysis of Ru single-atoms and zeolite boosts high-efficiency hydrogen storage

TL;DR: In this paper , a Ru single atom supported on *BEA zeolite catalyst (Ru(Na)/Beta), with the assistance of hydrogen spillover, was used to accelerate the hydrogenation of N-ethyl carbazole (NEC), N-propylcarbazole(NPC), and 2-methylindole (2-MID).
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Unveiling Secondary-Ion-Promoted Catalytic Properties of Cu-SSZ-13 Zeolites for Selective Catalytic Reduction of NO<i><sub>x</sub></i>

TL;DR: In this paper , a series of Cu-Sm-SSZ-13 zeolites have been prepared by ion-exchanging Sm ions followed by Cu ions, which exhibit superior NH3-SCR performance.
References
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Journal ArticleDOI

Role of Manganese Oxide in Syngas Conversion to Light Olefins

TL;DR: In this paper, a bifunctional catalyst of partially reducible manganese oxide in combination with SAPO-34 catalyzes the selective formation of light olefins, which validates the generality of the OX-ZEO (oxide-zeolite) concept for syngas conversion.
Journal ArticleDOI

CO2 hydrogenation into CH4 on NiHNaUSY zeolites

TL;DR: In this paper, a CO2 hydrogenation into methane was carried out over catalysts containing nickel and cerium species supported on a HNaUSY zeolite, using an H2/CO2 ratio of 4 and temperatures ranging from 250 to 450°C.
Journal ArticleDOI

Encapsulating Palladium Nanoparticles Inside Mesoporous MFI Zeolite Nanocrystals for Shape-Selective Catalysis.

TL;DR: The unique porosity and nanostructure of silicalite-1 crystals endowed the Pd@mnc-S1 material general shape-selectivity for various catalytic reactions, including selective hydrogenation, oxidation, and carbon-carbon coupling reactions.
Journal ArticleDOI

Selective Production of Aromatics Directly from Carbon Dioxide Hydrogenation

TL;DR: In this paper, the authors proposed a very attractive approach to reduce CO2 emissions and replace dwindling fossil fuels using renewable hydrogen (H2) to reduce carbon dioxide emissions and replacing fossil fuels.
Journal ArticleDOI

A General Strategy for Fabricating Isolated Single Metal Atomic Site Catalysts in Y Zeolite

TL;DR: This strategy provides a convenient route to fabricate promising zeolite-based M-ISAS catalysts for industrial applications by in situ separating and confining a metal-ethanediamine complex into β-cages during the crystallization process followed by thermal treatment.
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What are the potential applications of zeolite and CuO heterostructures in catalysis?

Zeolite-supported CuO catalysts have shown promise in diverse catalytic processes like CO/CO2 hydrogenation, oxidation reactions, and selective catalytic reduction of NOx with ammonia, as highlighted in the paper.