An innovative thermal transesterification protocol for the synthesis of linear and alkylene carbonates was investigated under both batch and continuous-flow (CF) conditions. Accordingly, model 1,n-diols (n = 2-4) and glycerol were set to react with dimethyl carbonate (DMC) at T and p of 150-260 degrees C and 1-50 bar, respectively, in the absence of any catalyst. 1,2-diols afforded the corresponding five-membered ring carbonates as the main products with a quantitative conversion and a selectivity up to 94%, whereas 1,3-diols gave the six-membered ring products along with linear mono- and dicarbonate derivatives. A complete conversion was attained also for glycerol, but the products distribution depended on reaction conditions: the CF mode ...
A comprehensive kinetic study on dimethyl carbonate synthesis by transesterification of ethylene car...
A two-step methodology was implemented to prepare dialkyl carbonates from both primary and secondary...
The process and energy intensifications for the synthesis of glycerol carbonate (GC) from glycerol a...
An innovative thermal transesterification protocol for the synthesis of linear and alkylene carbonat...
An innovative thermal transesterification protocol for the synthesis of linear and alkylene carbonat...
At 250–300 °C and 30–50 bar, a continuous-flow (CF) transesterification of different dialkyl and alk...
At 250–300 °C and 30–50 bar, a continuous-flow (CF) transesterification of different dialkyl and alk...
A solvent-free organocatalyzed process for the transesterification of dimethyl carbonate (DMC) with ...
Cyclic organic carbonates are prepared under intensified continuous flow conditions from the corresp...
The benchmark route for the preparation of cyclic organic carbonates starts from toxic, volatile and...
Dialkyl carbonates are important industrial compounds that have a low toxicity and are readily biode...
Continuous synthesis at ambient conditions: Dimethyl carbonate (DMC) is an important methylating and...
The utilisation of carbon dioxide and renewable resources as feedstocks for the chemical industry is...
Dimethyl carbonate (DMC) and glycidol are considered industrially important chemical entities and th...
Six-membered cyclic carbonates with hydroxyl and methoxycarbonyloxy functional groups were prepared ...
A comprehensive kinetic study on dimethyl carbonate synthesis by transesterification of ethylene car...
A two-step methodology was implemented to prepare dialkyl carbonates from both primary and secondary...
The process and energy intensifications for the synthesis of glycerol carbonate (GC) from glycerol a...
An innovative thermal transesterification protocol for the synthesis of linear and alkylene carbonat...
An innovative thermal transesterification protocol for the synthesis of linear and alkylene carbonat...
At 250–300 °C and 30–50 bar, a continuous-flow (CF) transesterification of different dialkyl and alk...
At 250–300 °C and 30–50 bar, a continuous-flow (CF) transesterification of different dialkyl and alk...
A solvent-free organocatalyzed process for the transesterification of dimethyl carbonate (DMC) with ...
Cyclic organic carbonates are prepared under intensified continuous flow conditions from the corresp...
The benchmark route for the preparation of cyclic organic carbonates starts from toxic, volatile and...
Dialkyl carbonates are important industrial compounds that have a low toxicity and are readily biode...
Continuous synthesis at ambient conditions: Dimethyl carbonate (DMC) is an important methylating and...
The utilisation of carbon dioxide and renewable resources as feedstocks for the chemical industry is...
Dimethyl carbonate (DMC) and glycidol are considered industrially important chemical entities and th...
Six-membered cyclic carbonates with hydroxyl and methoxycarbonyloxy functional groups were prepared ...
A comprehensive kinetic study on dimethyl carbonate synthesis by transesterification of ethylene car...
A two-step methodology was implemented to prepare dialkyl carbonates from both primary and secondary...
The process and energy intensifications for the synthesis of glycerol carbonate (GC) from glycerol a...