4.5 Article

Introduction of novel bronsted acidic ionic liquids with perchlorate counter-anion for one-pot synthesis of symmetric 3,3′-diaryloxindoles

Journal

RESEARCH ON CHEMICAL INTERMEDIATES
Volume 47, Issue 6, Pages 2487-2505

Publisher

SPRINGER
DOI: 10.1007/s11164-021-04419-5

Keywords

Sultone; Bronsted acidic ionic liquid; Task specific; Green chemistry; Symmetric 3,3 '-diaryloxindoles

Funding

  1. Research Council of King Abdulaziz University and Yasouj University

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Three novel 1,4-butane sultone-based Bronsted acidic ionic liquids with Perchlorate counter-anion were synthesized in this study, showing good thermal stability and high catalytic efficiency. These acidic ionic liquids are environmentally friendly, task-specific and easily separable from organic phase, providing target products in short reaction times at high yields.
In this work, three novel 1,4-butane sultone-based Bronsted acidic ionic liquids with Perchlorate conter-anion are prepared. These newly introduced ionic liquids were synthesized from a two-steps reaction. The reaction includes ring opening of 1,4-butane sultone using 1,4-dimethylpiperazine or 1,10-phenantroline as nitrogen nucleophile sources to obtain zwitterions and then follow by acidification treatment with perchloric acid to obtain three novel Bronsted acidic ionic liquids. The prepared task specific ionic liquids and their stable intermediates were characterized by FT-IR, (HNMR)-H-1, C-13-NMR, UV-Vis, TGA and CHNS analysis techniques. The prepared ionic liquids are fully water soluble and have good thermal stability up to 200 degrees C or higher. Their catalytic efficiency was checked for the preparation of symmetric 3,3'-diaryloxindoles compounds. It was found that the introduced acidic ionic liquids are completely green, environmental benign, task specific and have high catalytic stability. These novel acidic ionic liquids are simply separable by extraction from organic phase by solving in water up to six consecutive runs and give the target products in short reaction times at high yields. [GRAPHICS] .

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