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April 12, 2026Beilstein Journal of Organic Chemistry0 citationsOpen Access

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

HMHiroyuki MiyamuraRKRyosuke KajiyamaSOShun‐ya Onozawa

Key Points

  • The aim is to develop an efficient method for hydrogenating carbonyl compounds like ketones and aldehydes without harsh conditions.
  • Developed bimetallic Pt–Fe nanoparticle catalysts on a dimethylpolysilane-alumina support.
  • Conducted hydrogenation reactions under continuous-flow conditions at room temperature.
  • Tested the catalysts with various carbonyl substrates, including bulky and sterically hindered compounds.
  • Success in hydrogenating ketones and aldehydes under mild conditions.
  • Catalysts demonstrated high durability through long-term operation.
  • Metal species and their ratios significantly affected the catalytic performance.

Abstract

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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Cite This Study

Miyamura et al. (2026) studied this question.

synapsesocial.com/papers/69db37404fe01fead37c53b9https://doi.org/10.3762/bjoc.22.43
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