Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative Investigation

Currently, ingenious new analytical and process experimental techniques which are environmentally benign techniques, viz., ultrasound irradiation, have become immensely popular in promoting various reactions. In this work, a novel soluble multi-site phase transfer catalyst (PTC) viz., 1,4-bis-(propy...

Full description

Bibliographic Details
Main Authors: Perumberkandgai A. Vivekanand, Yu-Ming Hsieh, Maw-Ling Wang
Format: Article
Language:English
Published: MDPI AG 2013-02-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/18/2/2419
id doaj-0c0162d6736744f09c8a0117b362a567
record_format Article
spelling doaj-0c0162d6736744f09c8a0117b362a5672020-11-24T23:36:38ZengMDPI AGMolecules1420-30492013-02-011822419243710.3390/molecules18022419Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative InvestigationPerumberkandgai A. VivekanandYu-Ming HsiehMaw-Ling WangCurrently, ingenious new analytical and process experimental techniques which are environmentally benign techniques, viz., ultrasound irradiation, have become immensely popular in promoting various reactions. In this work, a novel soluble multi-site phase transfer catalyst (PTC) viz., 1,4-bis-(propylmethyleneammounium chloride)benzene (BPMACB) was synthesized and its catalytic efficiency was assessed by observing the kinetics of sonolytic polymerization of methacrylic acid butyl ester (MABE) using potassium persulphate (PPS) as an initiator. The ultrasound–multi-site phase transfer catalysis (US-MPTC)-assisted polymerization reaction was compared with the silent (non-ultrasonic) polymerization reaction. The effects of the catalyst and various reaction parameters on the catalytic performance were in detail investigated by following the kinetics of polymerization of MABE in an ethyl acetate-water biphasic system. From the detailed kinetic investigation we propose a plausible mechanism. Further the kinetic results demonstrate clearly that ultrasound-assisted phase-transfer catalysis significantly increased the reaction rate when compared to silent reactions. Notably, this environmentally benign and cost-effective process has great potential to be applied in various polymer industries.http://www.mdpi.com/1420-3049/18/2/2419ultrasonic irradiationphase transfer catalysis (PTC)polymerizationkineticsmulti-site phase transfer catalystbi-phase system
collection DOAJ
language English
format Article
sources DOAJ
author Perumberkandgai A. Vivekanand
Yu-Ming Hsieh
Maw-Ling Wang
spellingShingle Perumberkandgai A. Vivekanand
Yu-Ming Hsieh
Maw-Ling Wang
Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative Investigation
Molecules
ultrasonic irradiation
phase transfer catalysis (PTC)
polymerization
kinetics
multi-site phase transfer catalyst
bi-phase system
author_facet Perumberkandgai A. Vivekanand
Yu-Ming Hsieh
Maw-Ling Wang
author_sort Perumberkandgai A. Vivekanand
title Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative Investigation
title_short Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative Investigation
title_full Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative Investigation
title_fullStr Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative Investigation
title_full_unstemmed Sonolytic and Silent Polymerization of Methacrlyic Acid Butyl Ester Catalyzed by a New Onium Salt with bis-Active Sites in a Biphasic System — A Comparative Investigation
title_sort sonolytic and silent polymerization of methacrlyic acid butyl ester catalyzed by a new onium salt with bis-active sites in a biphasic system — a comparative investigation
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2013-02-01
description Currently, ingenious new analytical and process experimental techniques which are environmentally benign techniques, viz., ultrasound irradiation, have become immensely popular in promoting various reactions. In this work, a novel soluble multi-site phase transfer catalyst (PTC) viz., 1,4-bis-(propylmethyleneammounium chloride)benzene (BPMACB) was synthesized and its catalytic efficiency was assessed by observing the kinetics of sonolytic polymerization of methacrylic acid butyl ester (MABE) using potassium persulphate (PPS) as an initiator. The ultrasound–multi-site phase transfer catalysis (US-MPTC)-assisted polymerization reaction was compared with the silent (non-ultrasonic) polymerization reaction. The effects of the catalyst and various reaction parameters on the catalytic performance were in detail investigated by following the kinetics of polymerization of MABE in an ethyl acetate-water biphasic system. From the detailed kinetic investigation we propose a plausible mechanism. Further the kinetic results demonstrate clearly that ultrasound-assisted phase-transfer catalysis significantly increased the reaction rate when compared to silent reactions. Notably, this environmentally benign and cost-effective process has great potential to be applied in various polymer industries.
topic ultrasonic irradiation
phase transfer catalysis (PTC)
polymerization
kinetics
multi-site phase transfer catalyst
bi-phase system
url http://www.mdpi.com/1420-3049/18/2/2419
work_keys_str_mv AT perumberkandgaiavivekanand sonolyticandsilentpolymerizationofmethacrlyicacidbutylestercatalyzedbyanewoniumsaltwithbisactivesitesinabiphasicsystemacomparativeinvestigation
AT yuminghsieh sonolyticandsilentpolymerizationofmethacrlyicacidbutylestercatalyzedbyanewoniumsaltwithbisactivesitesinabiphasicsystemacomparativeinvestigation
AT mawlingwang sonolyticandsilentpolymerizationofmethacrlyicacidbutylestercatalyzedbyanewoniumsaltwithbisactivesitesinabiphasicsystemacomparativeinvestigation
_version_ 1725522216051802112