| Literature DB >> 31258305 |
Rebecca V Engel1, Raiedhah Alsaiari1, Ewa Nowicka1, Samuel Pattisson1, Peter J Miedziak1, Simon A Kondrat1, David J Morgan1, Graham J Hutchings1.
Abstract
Cyclic carbonates are valuable chemicals for the chemical industry and thus, their efficient synthesis is essential. Commonly, cyclic carbonates are synthesised in a two-step process involving the epoxidation of an alkene and a subsequent carboxylation to the cyclic carbonate. To couple both steps into a direct oxidative carboxylation reaction would be desired from an economical view point since additional work-up procedures can be avoided. Furthermore, the efficient sequestration of CO2, a major greenhouse gas, would also be highly desirable. In this work, the oxidative carboxylation of 1-decene is investigated using supported gold catalysts for the epoxidation step and tetrabutylammonium bromide in combination with zinc bromide for the cycloaddition of carbon dioxide in the second step. The compatibility of the catalysts for both steps is explored and a detailed study of catalyst deactivation using X-ray photoelectron spectroscopy and scanning electron microscopy is reported. Promising selectivity of the 1,2-decylene carbonate is observed using a one-pot two-step approach.Entities:
Keywords: 1,2-Decylene carbonate; 1-Decene; Oxidative carboxylation
Year: 2018 PMID: 31258305 PMCID: PMC6560682 DOI: 10.1007/s11244-018-0900-y
Source DB: PubMed Journal: Top Catal ISSN: 1022-5528 Impact factor: 2.910
Scheme 1Oxidative carboxylation of alkenes
1-decene epoxidation and direct oxidative carboxylation using 1% Au/support and 1% Au/SiO2-Bu4NBr-ZnBr2, respectively
| Entry | Reaction | Conversion (%) | Selectivity (%) | |||
|---|---|---|---|---|---|---|
| Epoxide | Cyclic carbonate | |||||
| 1 | Blank | – | – | 5 | 17 | – |
| 2 | 1% Au/SiO2 | – | – | 13 | 34 | – |
| 3 | 1% Au/TiO2 | – | – | 13 | 34 | – |
| 4a | 1% Au/SiO2-ZnBr2/Bu4NBr | 15 | 15 | 20 | 3 | 8 |
Reaction conditions: 1% Au/SiO2 (0.1 g), 1-decene (10 mL, 53 mmol), AIBN (6 mg, 0.036 mmol), 800 rpm, 90 °C, 24 h
aBu4NBr (0.36 g, 1.12 mmol) and ZnBr2 (0.16 g, 0.71 mmol) added directly at the beginning of the reaction; 28 h
Effect of supported gold catalysts on the cycloaddition of carbon dioxide to 1,2-epoxydecane
| Entry | Catalyst | Conversion (%) | Cyclic carbonate selectivity (%) |
|---|---|---|---|
| 1 | Blank | 0 | 0 |
| 2 | 1% Au/TiO2a | 1 | 0 |
| 3 | 1% Au/SiO2a | 1 | 0 |
| 4 | Bu4NBr + ZnBr2 | 98 | 98 |
| 5 | 1% Au/SiO2 + Bu4NBr + ZnBr2 | 98 | 98 |
| 6 | 1% Au/TiO2 + Bu4NBr + ZnBr2 | 98 | 97 |
Reaction conditions: supported gold catalyst (0.2 g), 1,2-epoxydecane (5 mL, 26.88 mmol), Bu4NBr (0.18 g, 0.56 mmol), ZnBr2 (0.08 g, 0.335 mmol), 20 bar CO2, 80°C,4 h, 800 rpm
a90 °C
Effect of TBAB and zinc bromide on 1-decene epoxidation using gold catalysts at 15 bar O2
| Entry | Catalyst | Co-catalyst | Conversion (%) | Selectivity (%) | |||
|---|---|---|---|---|---|---|---|
| Epoxide | Allylic products | Diol | Others | ||||
| 1 | Blank | – | 22 | 17 | 28 | 0 | 40 |
| 2 | 1% Au/SiO2 | – | 24 | 19 | 24 | 2 | 41 |
| 3 | 1% Au/SiO2 | Bu4NBr + ZnBr2 | 21 | 2 | 26 | 7 | 55 |
Reaction conditions: 1% Au/SiO2 (0.1 g), 1-decene (10 mL, 53 mmol), AIBN (6 mg, 0.036 mmol), Bu4NBr (0.36 g, 1.12 mmol), ZnBr2 (0.16 g, 0.71 mmol), 90 °C, 15 bar O2, 24 h, 800 rpm. Allylic products = ∑(1-decen-3-one, 1-decen-3-ol, 2-decenal, 2-decen-1-ol). Others = ∑ of all identified products including (C7 + C8 + C9 acids, C8 + C9 aldehyde, C7 + C8 alcohols, 3-nonen-1-ol, 3-nonanone, cyclododecane, 2-decenoic acid, epoxide ring opening products such as bromoalcohol)
Effect of TBAB and zinc bromide on 1-decene epoxidation using supported gold catalysts under atmospheric pressure of air
| Entry | Catalyst | Co-catalyst | Conversion (%) | Selectivity (%) | |||
|---|---|---|---|---|---|---|---|
| Epoxide | Allylic products | Diol | Others | ||||
| 1 | Blank | – | 5 | 17 | 45 | 1 | 25 |
| 2 | Blank | Bu4NBr + ZnBr2 | 1 | 0 | 71 | 0 | 29 |
| 3 | 1% Au/SiO2 | – | 13 | 34 | 28 | 1 | 27 |
| 4 | 1% Au/SiO2 | Bu4NBr + ZnBr2 | 10 | 9 | 32 | 7 | 39 |
| 5 | 1% Au/TiO2 | – | 13 | 34 | 30 | 2 | 24 |
| 6 | 1% Au/TiO2 | Bu4NBr + ZnBr2 | 10 | 12 | 32 | 6 | 44 |
Reaction conditions: supported gold catalyst (0.1 g), 1-decene (10 mL, 53 mmol), AIBN (6 mg, 0.036 mmol), Bu4NBr (0.36 g, 1.12 mmol), ZnBr2 (0.16 g, 0.71 mmol), 90 °C, atmospheric pressure of air, 24 h, 800 rpm. Allylic products = ∑ (1-decen-3-one, 1-decen-3-ol, 2-decenal, 2-decen-1-ol). Others = ∑ of all identified products including (C7 + C8 + C9 acids, C8 + C9 aldehyde, C7 + C8 alcohols, 3-nonen-1-ol, 3-nonanone, cyclododecane, 2-decenoic acid, epoxide ring opening products such as bromoalcohol)
Effect of TBAB and zinc bromide on 1-decene epoxidation using GO as catalyst under atmospheric pressure of air
| Entry | Catalyst | Co-catalyst | Conversion (%) | Selectivity (%) | |||
|---|---|---|---|---|---|---|---|
| Epoxide | Allylic products | Diol | Others | ||||
| 1 | GO | – | 12 | 24 | 31 | 4 | 28 |
| 2 | GO | ZnBr2 | 2 | 0 | 38 | 3 | 50 |
| 3 | GO | Bu4NBr | 1 | 0 | 96 | 0 | 0 |
| 4 | GO | Bu4NBr + ZnBr2 | 2 | 0 | 53 | 4 | 42 |
| 5 | GO | Bu4NBr + ZnBr2a | 11 | 16 | 34 | 5 | 30 |
Reaction conditions: GO (0.1 g), 1-decene (10 mL, 53 mmol), Bu4NBr (0.18 g, 0.56 mmol), ZnBr2 (0.08 g, 0.36 mmol), 90 °C, atmospheric pressure of air, 48 h, 800 rpm. Allylic products = ∑ (1-decen-3-one, 1-decen-3-ol, 2-decenal, 2-decen-1-ol). Others = ∑ of all identified products including (C7 + C8 + C9 acids, C8 + C9 aldehyde, C7 + C8 alcohols, 3-nonen-1-ol, 3-nonanone, cyclododecane, 2-decenoic acid, epoxide ring opening products such as bromoalcohol)
aBu4NBr (0.018 g, 0.056 mmol), ZnBr2 (0.008 g, 0.036 mmol)
Fig. 1SEM secondary electron micrographs of the fresh (a) and spent GO catalysts (b Bu4NBr + ZnBr2, c Bu4NBr, d ZnBr2, e 10× less Bu4NBr + ZnBr2)
Fig. 2SEM backscattered electron micrographs of the fresh a and spent catalysts (b and c Bu4NBr + ZnBr2, d Bu4NBr, e ZnBr2, f 10× less Bu4NBr + ZnBr2)
One-pot two-step approach for the direct synthesis of cyclic carbonate starting from 1-decene using 1% Au/support-Bu4NBr-ZnBr2
| Entry | Conversion (%) | Selectivity (%) | |||
|---|---|---|---|---|---|
| Epoxide | Cyclic carbonate | ||||
| 1 | 15 | 20 | 24 | 2 (19)a | 9 |
| 2 | –b | 20 | 14 | 3 (34)a | 24 |
| 3c | –b | 20 | 14 | 3 (34)a | 22 |
Reaction conditions: 1% Au/SiO2 (0.1 g), Bu4NBr (0.36 g, 1.12 mmol), ZnBr2 (0.16 g, 0.71 mmol), 1-decene (10 mL, 53 mmol), AIBN (6 mg, 0.036 mmol), 800 rpm, 90 °C, 24 h epoxidation + 4 h cycloaddition of CO2 with the formed 1,2-epoxydecane. Catalyst for the cycloaddition was added after the epoxidation step
aEpoxide selectivity after epoxidation step in brackets
bAtmospheric pressure of air. Reaction solution was transferred into an autoclave after the epoxidation
c1% Au/TiO2 (0.1 g)