Obtaining industrially relevant products from renewable resources and developing processes under the light of sustainable chemistry is a prominent endeavor of present-day chemical research. In this context, herein we investigated the dehydration of fructose and sucrose in deep eutectic solvents promoted by the ion-exchange resin Amberlyst 15 as heterogeneous catalyst. We optimized the reaction conditions in terms of temperature, catalyst loading, and initial amount of substrate. Then, we looked at the effect of structural variations in the solvent components on the reaction outcome. Under the best experimental conditions, we obtained very good yields of 78% at 60 °C and 69% at 80 °C for fructose and sucrose, respectively. Our cataly...
Monophasic separation-friendly solvent systems were investigated for the sustainable acid-catalyzed ...
Lignosulfonate-based renewable solid acids were first utilized as effective catalysts for fructose d...
Carbohydrates are the most abundant organic compounds on the world. Consequently, sucrose is a molec...
Obtaining industrially relevant products from renewable resources and developing processes under th...
5-Hydroxymethylfurfural (5HMF) can be produced from lignocellulosic biomass which is a non-toxic and...
A mixture of hexafluoroisopropanol (HFIP) and water was used as a new and unknown monophasic reactio...
Biomass is a source of carbohydrates, which is composed of two different types of sugars hexose \ud ...
The increase in energy demand and depletion of fossil fuels are among major issues of modern society...
5-Hydroxymethylfurfural (HMF), a product of catalytic dehydration of C6 sugars, is a versatile and k...
Several biobased platform chemicals have been identified as potential replacements of oil-based prod...
HMF synthesis typically requires high temperature and is carried out in aqueous solutions. In this w...
The conversion of the most reactive hexose, i.e. fructose, to 2,5-furandicarboxylic acid (FDCA) proc...
HMF synthesis typically requires high temperature and is carried out in aqueous solutions. In this w...
Selective conversion of biomass-derived carbohydrates into 5-hydroxy-methylfurfural (HMF) is of grea...
Different acidic heterogeneous catalysts like alumina, aluminosilicate, zirconium phosphate, niobic ...
Monophasic separation-friendly solvent systems were investigated for the sustainable acid-catalyzed ...
Lignosulfonate-based renewable solid acids were first utilized as effective catalysts for fructose d...
Carbohydrates are the most abundant organic compounds on the world. Consequently, sucrose is a molec...
Obtaining industrially relevant products from renewable resources and developing processes under th...
5-Hydroxymethylfurfural (5HMF) can be produced from lignocellulosic biomass which is a non-toxic and...
A mixture of hexafluoroisopropanol (HFIP) and water was used as a new and unknown monophasic reactio...
Biomass is a source of carbohydrates, which is composed of two different types of sugars hexose \ud ...
The increase in energy demand and depletion of fossil fuels are among major issues of modern society...
5-Hydroxymethylfurfural (HMF), a product of catalytic dehydration of C6 sugars, is a versatile and k...
Several biobased platform chemicals have been identified as potential replacements of oil-based prod...
HMF synthesis typically requires high temperature and is carried out in aqueous solutions. In this w...
The conversion of the most reactive hexose, i.e. fructose, to 2,5-furandicarboxylic acid (FDCA) proc...
HMF synthesis typically requires high temperature and is carried out in aqueous solutions. In this w...
Selective conversion of biomass-derived carbohydrates into 5-hydroxy-methylfurfural (HMF) is of grea...
Different acidic heterogeneous catalysts like alumina, aluminosilicate, zirconium phosphate, niobic ...
Monophasic separation-friendly solvent systems were investigated for the sustainable acid-catalyzed ...
Lignosulfonate-based renewable solid acids were first utilized as effective catalysts for fructose d...
Carbohydrates are the most abundant organic compounds on the world. Consequently, sucrose is a molec...