Isolated and Paired Metal Sites in Zeolites Using Solid‐State Ion Exchange

R Rio G. Moore (Chemical and Biological Engineering Department Montana State University Bozeman MT 59717 USA) J James M. Crawford (Chemical and Biological Engineering Department Montana State University Bozeman MT 59717 USA)

Abstract

AbstractIsolated and paired extraframework transition metal cations in zeolites are emerging as top candidates for numerous applications, including, but not limited to, selective methane oxidation to methanol, selective catalytic reduction of nitrogen oxides, propane dehydrogenation, propylene epoxidation, and direct air capture of carbon dioxide. Importantly, these well‐defined heterogeneous catalysts offer parallels with molecular and metalloenzyme catalytic active sites. Aqueous‐phase ion exchange (APIE) is the most common synthesis technique to obtain these catalysts. Solid‐state ion exchange (SSIE) is an often overlooked technique that offers synthetic advantages compared to APIE. Thus, recent advances in solid‐state synthesis strategies merit contemporary contextualization. In this minireview, we describe the basic principles, methods, mechanisms, challenges, and advances in solid‐state ion exchange in the context of well‐defined transition metal cation active sites located in extraframework positions of the zeolite.

Article Details

Volume / Issue Vol. 64, Issue 23
Published June 02, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (2)

R

Rio G. Moore

Chemical and Biological Engineering Department Montana State University Bozeman MT 59717 USA

J

James M. Crawford

Chemical and Biological Engineering Department Montana State University Bozeman MT 59717 USA