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Continuous-flow carbonyl hydrogenation under subatmospheric to atmospheric hydrogen pressure enabled by robust heterogeneous Pt–Fe catalysts

Hiroyuki Miyamura et al · Beilstein-Institut · 2026

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The reduction of carbonyl compounds, including ketones and aldehydes, to alcohols is a fundamental and important reaction in organic synthesis. One of the most ideal methods is catalytic hydrogenation, however, the hydrogenation of ketones generally requires harsh reaction conditions, such as high temperature and high pressure. We developed a bimetallic Pt–Fe nanoparticle catalyst immobilized on a composite support of dimethylpolysilane and alumina. Both ketones and aldehydes, including highly bulky and sterically hindered substrates, were smoothly hydrogenated using the newly developed catalysts under continuous-flow conditions at room temperature and under subatmospheric to atmospheric hydrogen pressure. High durability of the heterogeneous catalysts was confirmed by a long-term continuous-flow operation. Interestingly, both the combination of metal species and the metal ratio strongly influenced the catalytic performance.

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APA 7

al, H. M. E. (2026). Continuous-flow carbonyl hydrogenation under subatmospheric to atmospheric hydrogen pressure enabled by robust heterogeneous Pt–Fe catalysts. https://doi.org/10.3762/bjoc.22.43

MLA

al, Hiroyuki Miyamura et. "Continuous-flow carbonyl hydrogenation under subatmospheric to atmospheric hydrogen pressure enabled by robust heterogeneous Pt–Fe catalysts." 2026. https://doi.org/10.3762/bjoc.22.43.

Chicago

al, Hiroyuki Miyamura et. 2026. "Continuous-flow carbonyl hydrogenation under subatmospheric to atmospheric hydrogen pressure enabled by robust heterogeneous Pt–Fe catalysts.". https://doi.org/10.3762/bjoc.22.43.

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al, H. M. E. 2026, Continuous-flow carbonyl hydrogenation under subatmospheric to atmospheric hydrogen pressure enabled by robust heterogeneous Pt–Fe catalysts, Beilstein-Institut, available at: https://doi.org/10.3762/bjoc.22.43 [Accessed 28 Jun. 2026].

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Título
Continuous-flow carbonyl hydrogenation under subatmospheric to atmospheric hydrogen pressure enabled by robust heterogeneous Pt–Fe catalysts
Autor / colaboradores
Hiroyuki Miyamura et al
Editorial
Beilstein-Institut
Año de publicación
2026
ISSN
1860-5397
ISSN
1860-5397
Idioma
eng

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