An excellent eco-friendly Selective alcohols oxidation by an Acid functionalized imidazolium based ionic liquid

Author:

Deepa Manickam1,Uthayanila Selvarasu2,Priya Ramasamy Shanmuga1,Ganesh Gopalsamy Selvaraj1,Karthikeyan Parasuraman1ORCID

Affiliation:

1. PG and Research Department of Chemistry Pachaiyappas College Campus, University of Madras Chennai-600 030, Tamilnadu, India

2. Department of Chemistry, Pachaiyappas College for Women Campus, University of Madras, Kanchipuram- 631501 Tamilnadu, India

Abstract

Aims: A green route for the oxidation of alcohols to corresponding carbonyl compounds in room temperature ionic liquid ([CEMIM]BH4) was developed by using hydrogen peroxide as the oxygen source. In aqueous solution at room temperature, 0.2 mol% of ([CEMIM]BH4) showed excellent catalytic properties for selective oxidation of aromatic and aliphatic alcohols Background: One of the vital reactions in organic synthesis is the oxidation of alcohols to carbonyl compounds. In particular, the conversion of primary alcohols to aldehydes has received a variety of applications as they are used as intermediates in fine chemicals mostly for the perfume industry. Objective: In the present work, we have reported an effective green route for the selective oxidation of alcohols to the carbonyl compounds using peroxide in an ionic liquid 1-carboxyethyl-3-methyl-imidazolium tetrahydroborate ([CEMIM]BH4) Methods:: A mixture of alcohol (2 mmol), ([CEMIM]BH4) (0.2 mol%), H2O2 (2 mmol) were stirred thoroughly with the help of a magnetic stirrer for 10 min at ambient temperature Results: The catalytic activity of ([CEMIM]BH4) is very effective, which reflects its good solvating nature during the oxidation. Conclusion: In conclusion, the series of experiments described represents a useful method for the oxidation of primary and secondary alcohols to carbonyl compounds at room temperature. The catalyst can be easily prepared and is therefore extremely cost-effective. The rapid reaction times for the substrates mean a large number of materials may be screened in parallel over a short period of time.

Publisher

Bentham Science Publishers Ltd.

Subject

Organic Chemistry,Analytical Chemistry,Catalysis

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