Co(Salen) Catalysed Oxidation of Synthetic Lignin-Like Polymer: Naoh Effects

Abstract An attempt has been made to selectively oxidise synthetic lignin-like polymer for fine chemicals. The G- and S-type polymers (G- and S- type lignin model polymers) were synthesized using simple aromatic compounds as starting materials and then oxidised to benzaldehydes by reacting them with...

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Main Author: Zhou Xue-Fei
Format: Article
Language:English
Published: Sciendo 2014-09-01
Series:Polish Journal of Chemical Technology
Subjects:
Online Access:https://doi.org/10.2478/pjct-2014-0057
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spelling doaj-3c989c32d0e1461ba15f6fe270445d932021-09-05T14:01:00ZengSciendoPolish Journal of Chemical Technology1899-47412014-09-01163919610.2478/pjct-2014-0057pjct-2014-0057Co(Salen) Catalysed Oxidation of Synthetic Lignin-Like Polymer: Naoh EffectsZhou Xue-Fei0Kunming University of Science and Technology, P.O. Box A302-12, Building No. 5, Xinying Yuan, No. 50, Huancheng East Road, Kunming, 650051, ChinaAbstract An attempt has been made to selectively oxidise synthetic lignin-like polymer for fine chemicals. The G- and S-type polymers (G- and S- type lignin model polymers) were synthesized using simple aromatic compounds as starting materials and then oxidised to benzaldehydes by reacting them with Co(salen) catalytic system. The reaction was characterized by measuring the change of the polymer with FTIR, C-13 NMR and GC-MS spectroscopy. The results obtained by the FTIR and C-13 NMR showed that the effects of NaOH were important and higher yield of benzaldehydes characterized by GC-MS in the presence of NaOH in the course of catalytic oxidation of the polymer demonstrated these effects. From the results, the catalyst could suitably be used in green procedures for lignin transformation.https://doi.org/10.2478/pjct-2014-0057co(salen)catalystcatalytic oxidationlignin model polymernaoh effectftirc-13 nmrgc-ms
collection DOAJ
language English
format Article
sources DOAJ
author Zhou Xue-Fei
spellingShingle Zhou Xue-Fei
Co(Salen) Catalysed Oxidation of Synthetic Lignin-Like Polymer: Naoh Effects
Polish Journal of Chemical Technology
co(salen)
catalyst
catalytic oxidation
lignin model polymer
naoh effect
ftir
c-13 nmr
gc-ms
author_facet Zhou Xue-Fei
author_sort Zhou Xue-Fei
title Co(Salen) Catalysed Oxidation of Synthetic Lignin-Like Polymer: Naoh Effects
title_short Co(Salen) Catalysed Oxidation of Synthetic Lignin-Like Polymer: Naoh Effects
title_full Co(Salen) Catalysed Oxidation of Synthetic Lignin-Like Polymer: Naoh Effects
title_fullStr Co(Salen) Catalysed Oxidation of Synthetic Lignin-Like Polymer: Naoh Effects
title_full_unstemmed Co(Salen) Catalysed Oxidation of Synthetic Lignin-Like Polymer: Naoh Effects
title_sort co(salen) catalysed oxidation of synthetic lignin-like polymer: naoh effects
publisher Sciendo
series Polish Journal of Chemical Technology
issn 1899-4741
publishDate 2014-09-01
description Abstract An attempt has been made to selectively oxidise synthetic lignin-like polymer for fine chemicals. The G- and S-type polymers (G- and S- type lignin model polymers) were synthesized using simple aromatic compounds as starting materials and then oxidised to benzaldehydes by reacting them with Co(salen) catalytic system. The reaction was characterized by measuring the change of the polymer with FTIR, C-13 NMR and GC-MS spectroscopy. The results obtained by the FTIR and C-13 NMR showed that the effects of NaOH were important and higher yield of benzaldehydes characterized by GC-MS in the presence of NaOH in the course of catalytic oxidation of the polymer demonstrated these effects. From the results, the catalyst could suitably be used in green procedures for lignin transformation.
topic co(salen)
catalyst
catalytic oxidation
lignin model polymer
naoh effect
ftir
c-13 nmr
gc-ms
url https://doi.org/10.2478/pjct-2014-0057
work_keys_str_mv AT zhouxuefei cosalencatalysedoxidationofsyntheticligninlikepolymernaoheffects
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