Synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquid

The synthesis of 5-hydroxymethylfurfural (HMF) from sucrose was investigated in the presence of the Brönsted-Lewis acidic ionic liquids (ILs). It was concluded that IL 1-(3-sulfonic acid)-propyl-3-methylimidazole chlorochrominate [HO3S-(CH2)3-mim]Cl-CrCl3 (molar fraction of CrCl3x = 0.55) had a good...

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Main Authors: L. Yao, S. Liu, L. Li, S. Yu, F. Liu, Z. Song
Format: Article
Language:English
Published: Chemical Society of Ethiopia 2016-08-01
Series:Bulletin of the Chemical Society of Ethiopia
Subjects:
Online Access:https://www.ajol.info/index.php/bcse/article/view/140944
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spelling doaj-44ac1c605ab04b8a9cc73acd6d6d72ce2020-11-24T23:55:51ZengChemical Society of EthiopiaBulletin of the Chemical Society of Ethiopia1011-39241726-801X2016-08-01302283288http://dx.doi.org/10.4314/bcse.v30i2.12Synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquidL. YaoS. LiuL. LiS. YuF. LiuZ. SongThe synthesis of 5-hydroxymethylfurfural (HMF) from sucrose was investigated in the presence of the Brönsted-Lewis acidic ionic liquids (ILs). It was concluded that IL 1-(3-sulfonic acid)-propyl-3-methylimidazole chlorochrominate [HO3S-(CH2)3-mim]Cl-CrCl3 (molar fraction of CrCl3x = 0.55) had a good catalytic performance with 78.8% yield of HMF. The acid type of IL played a significant role in the reaction. Lewis acid site acted more effectively than its Brönsted counterpart and a synergetic effect of Brönsted and Lewis acid sites enhanced the IL catalytic performance. The reusability of IL was good.https://www.ajol.info/index.php/bcse/article/view/140944Acidic ionic liquidSucrose5-HydroxymethylfurfuralCatalysis
collection DOAJ
language English
format Article
sources DOAJ
author L. Yao
S. Liu
L. Li
S. Yu
F. Liu
Z. Song
spellingShingle L. Yao
S. Liu
L. Li
S. Yu
F. Liu
Z. Song
Synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquid
Bulletin of the Chemical Society of Ethiopia
Acidic ionic liquid
Sucrose
5-Hydroxymethylfurfural
Catalysis
author_facet L. Yao
S. Liu
L. Li
S. Yu
F. Liu
Z. Song
author_sort L. Yao
title Synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquid
title_short Synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquid
title_full Synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquid
title_fullStr Synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquid
title_full_unstemmed Synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquid
title_sort synthesis of hydroxymethylfurfural from sucrose using brönsted-lewis acidic ionic liquid
publisher Chemical Society of Ethiopia
series Bulletin of the Chemical Society of Ethiopia
issn 1011-3924
1726-801X
publishDate 2016-08-01
description The synthesis of 5-hydroxymethylfurfural (HMF) from sucrose was investigated in the presence of the Brönsted-Lewis acidic ionic liquids (ILs). It was concluded that IL 1-(3-sulfonic acid)-propyl-3-methylimidazole chlorochrominate [HO3S-(CH2)3-mim]Cl-CrCl3 (molar fraction of CrCl3x = 0.55) had a good catalytic performance with 78.8% yield of HMF. The acid type of IL played a significant role in the reaction. Lewis acid site acted more effectively than its Brönsted counterpart and a synergetic effect of Brönsted and Lewis acid sites enhanced the IL catalytic performance. The reusability of IL was good.
topic Acidic ionic liquid
Sucrose
5-Hydroxymethylfurfural
Catalysis
url https://www.ajol.info/index.php/bcse/article/view/140944
work_keys_str_mv AT lyao synthesisofhydroxymethylfurfuralfromsucroseusingbronstedlewisacidicionicliquid
AT sliu synthesisofhydroxymethylfurfuralfromsucroseusingbronstedlewisacidicionicliquid
AT lli synthesisofhydroxymethylfurfuralfromsucroseusingbronstedlewisacidicionicliquid
AT syu synthesisofhydroxymethylfurfuralfromsucroseusingbronstedlewisacidicionicliquid
AT fliu synthesisofhydroxymethylfurfuralfromsucroseusingbronstedlewisacidicionicliquid
AT zsong synthesisofhydroxymethylfurfuralfromsucroseusingbronstedlewisacidicionicliquid
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