Rhodium/Indium Heterobimetallic Alloy as an Effective Catalyst for Reductive C(sp <sup>3</sup> )─O Silylation of Ethers with Chlorosilanes

R Rin Seki (Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan) H Haruka Kido (Department of Material Chemistry Graduate School of Engineering Kyoto University Kyoto Japan) K Kana Ko (Department of Applied Chemistry for Environment Graduate School of Urban Environmental Sciences Tokyo Metropolitan University 1‐1 Minami‐Osawa Hachioji Tokyo 192‐0397 Japan) K Kaoru Imoto (Department of Applied Chemistry for Environment Graduate School of Urban Environmental Sciences Tokyo Metropolitan University 1‐1 Minami‐Osawa Hachioji Tokyo 192‐0397 Japan) H Hiroki Miura T Tetsuya Shishido Y Yoshiaki Nakao (Department of Material Chemistry Graduate School of Engineering Kyoto University Kyoto Japan)

Abstract

Abstract C(sp 3 )─O bonds are ubiquitous in natural and synthetic small molecules as well as polymers. The methodology for functionalizing C(sp 3 )─O bonds is of great importance for reforming these molecular structures into high‐value‐added chemical feedstocks. Here, we describe the reductive C(sp 3 )─O bond silylation of ethers with chlorosilanes and magnesium reductants by cooperative rhodium and indium catalysis. This methodology allows the incorporation of silyl moieties into the C(sp 3 )─O bond of various unactivated cyclic and acyclic alkyl ethers using chlorotriorganosilanes. Not only the mixture of rhodium complex with indium reagent but also rhodium nanoparticles supported on indium oxide showed high catalytic activity, indicating a remarkable cooperative effect by the two metals. Notably, in both cases, the generation of rhodium/indium heterobimetallic alloy nanoparticles was revealed by mechanistic studies including XRD, XAS, and TEM imaging. This research advances the development of heterogeneous nanoparticle catalysts as an option to enable organic transformations that have not yet been achieved using homogeneous catalysts.

Article Details

Volume / Issue Vol. 64, Issue 28
Published July 07, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

R

Rin Seki

Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan

H

Haruka Kido

Department of Material Chemistry Graduate School of Engineering Kyoto University Kyoto Japan

K

Kana Ko

Department of Applied Chemistry for Environment Graduate School of Urban Environmental Sciences Tokyo Metropolitan University 1‐1 Minami‐Osawa Hachioji Tokyo 192‐0397 Japan

K

Kaoru Imoto

Department of Applied Chemistry for Environment Graduate School of Urban Environmental Sciences Tokyo Metropolitan University 1‐1 Minami‐Osawa Hachioji Tokyo 192‐0397 Japan

H

Hiroki Miura

T

Tetsuya Shishido

Y

Yoshiaki Nakao

Department of Material Chemistry Graduate School of Engineering Kyoto University Kyoto Japan