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Ultrasonic mediated dual-site phase transfer catalyzed polymerization of N-butenyl isatin in two phase system- a kinetic study.

Authors :
Murugesan, Vajjiravel
Marimuthu, Elumalai
Rathinam, Balamurugan
Karthikeyan, Jagannathan
Varathan, Ezhilselvi
Source :
Journal of Macromolecular Science: Pure & Applied Chemistry; 2024, Vol. 61 Issue 3, p165-174, 10p
Publication Year :
2024

Abstract

Use of ultrasound as an additional source for promoting polymerization reactions has gained great attention. Phase transfer catalyst (PTC) along with ultrasonication in polymerization process is an attractive methodology to achieve good yield and realizing principles of green chemistry. Herein, we reported the facile polymerization of synthesized novel N-butenyl isatin (NBI) at 60 ± 2 °C with and without ultrasonic irradiation (45 kHz; 550 W) using dual-site phase transfer catalyst (1, 4-bis (triethyl methyl ammonium) benzene dibromide, TEMABDB) and potassium peroxydisulphate (PDS or PPS) as initiator. Ultrasonication (US) promotes the formation of reactive radicals, which can be utilized effectively in phase transfer polymerization process. Hence, the rate was multi-folded (twice) in comparison with silent condition. The effect of sonication frequency and various reaction parameters on the polymerization process were investigated in both conditions. An enhancement of reaction rate under sonication was validated by activation parameter. Synthesized monomer and poly (N-butenyl isatin) was characterized by different spectral methods. Facile polymerization of N-butenyl isatin by sonication aided dual-site PTC. Green approach and mild conditions used for polymerization of NBI. Sonication lifts the rate significantly in comparison with standard condition. Effects of variables in polymerization rate were explored in both conditions. Poly (N-butenyl isatin) was analyzed by different spectral techniques. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10601325
Volume :
61
Issue :
3
Database :
Complementary Index
Journal :
Journal of Macromolecular Science: Pure & Applied Chemistry
Publication Type :
Academic Journal
Accession number :
176106916
Full Text :
https://doi.org/10.1080/10601325.2024.2310582