Use of Biomass Glycerol as a Reducing Agent for Photocatalytic Deprotection of Pyridine N‐Oxides in an Aqueous Suspension of Titanium(IV) Oxide

Author:

Kominami Hiroshi1ORCID,Akamata Reo2,Tanaka Atsuhiro1

Affiliation:

1. Department of Applied Chemistry Faculty of Science and Engineering Kindai University Kowakae Higashiosaka Osaka 577-8502 Japan

2. Department of Molecular and Material Engineering Graduate School of Science and Engineering Kindai University Kowakae Higashiosaka Osaka 577-8502 Japan

Abstract

AbstractDeprotection of pyridine N‐oxides under mild conditions with an inexpensive and environmentally friendly reducing reagent is an important chemical procedure. The use of biomass waste as the reducing reagent, water as the solvent and solar light as the energy source is one of the most promising approaches with minimal impact on the environment. Therefore, a TiO2 photocatalyst and glycerol are suitable components of this type of reaction. Stoichiometric deprotection of pyridine N‐oxide (PyNO) with a minimal amount of glycerol (PyNO:glycerol= 7 : 1) was achieved, with only CO2 being produced as the final oxidation product of glycerol. The deprotection of PyNO was thermally accelerated. Under solar light, the temperature of the reaction system increased to 40–50 °C and PyNO was also quantitatively deprotected, indicating that solar energy, i. e., UV light and thermal energy, can be effectively used. The results provide a new approach in the fields of organic chemistry and medical chemistry using biomass waste and solar light.

Funder

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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