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March 4, 2026Compounds0 citationsOpen Access

Chemoselective Reduction of 3-Methylcyclohex-2-enone into rac 3-Methylcyclohex-2-enol (Seudenol) by NaBH4 Alone, with Modifiers or via Catalytic Transfer Hydrogenation

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MGMarek GlińskiADA. DąbrowskiAKA. Kacprzak

Key Points

  • This research aims to explore the chemoselective reduction of an α,β-unsaturated ketone to its corresponding alcohol.
  • Investigated reduction using NaBH4 with and without modifiers.
  • Conducted catalytic transfer hydrogenation (CTH) using various catalysts.
  • Analyzed the effects of solvent composition, temperature, and molar ratios.
  • Achieved 95-99% conversion with NaBH4 and up to 95% selectivity with modifiers.
  • CTH provided 100% selectivity but with lower conversion rates.
  • Identified 3-methylcyclohex-3-enol as a significant product with 25-33% yield in the presence of MgO.

Abstract

A systematic study of the chemoselectivity of the reduction of 3-methylcyclohex-2-enone (seudenone) to 3-methylcyclohex-2-enol (seudenol) was performed. Two approaches were investigated, namely the reduction of this ketone using NaBH4 with modifiers and Catalytic Transfer Hydrogenation (CTH). The former resulted in higher conversions (95–99%) and high selectivity (up to 95%), whereas with CTH, a selectivity of 100% was achieved, albeit with a low conversion. The study therefore demonstrated that it is possible to chemoselectively reduce an α,β-unsaturated ketone in the liquid phase CTH using MgO as the catalyst and 2-pentanol as the hydrogen donor. The application of modifiers such as CeCl3 · 7H2O and MCl2, where M = Be, Mg, Ca, Sr, and Ba, resulted in a significant improvement of the chemoselectivity (up to 95%) of the reduction with NaBH4. The effect of parameters such as the solvent mixture composition, reaction temperature and modifier:NaBH4 molar ratio was also investigated. In CTH, although high conversions of the ketone were observed for Al2O3, ZrO2 and MgO in the vapor phase, the first two did not yield 3-methylcyclohex-2-enol among the obtained products. It was shown that 3-methylcyclohex-3-enol was the main product of the transformations of 3-methylcyclohex-2-enone in the presence of MgO, with yields of 25–33%. In a series of experiments, it was shown that 3-methylcyclohex-3-enol is formed as a result of the transformation of 3-methylcyclohex-2-enol in the presence of MgO as a catalyst.

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Cite This Study

Gliński et al. (2026) studied this question.

synapsesocial.com/papers/69a7ccf7d48f933b5eed8f7chttps://doi.org/10.3390/compounds6010018
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