| Literature DB >> 35529130 |
Marina A Guseva1, Dmitry A Alentiev1, Evgeniya V Bermesheva2, Ilya A Zamilatskov3, Maxim V Bermeshev1.
Abstract
A simple one-step approach for the selective synthesis of exo-norbornenes with organosilicon substituents is suggested through the direct hydrosilylation of norbornadiene-2,5 with chlorine-free silanes. Using the example of norbornadiene-2,5 hydrosilylation with pentamethyldisiloxane and 1,1,1,3,5,5,5-heptamethyltrisiloxane, the possibility of obtaining exo-isomers of norbornenes with 100 exo-/endo-selectivity is shown. The investigation of Pt-, Rh-, and Pd-complexes in combination with various ligands as catalysts was performed. The hydrosilylation of norbornadiene-2,5 in the presence of Pt- or Rh-catalysts was not selective and led to a mixture consisting of three isomers (exo-/endo-norbornenes and substituted nortricyclane). In the case of the Pd-salt/ligand catalytic system, the formation of an endo-isomer was not observed at all and only two isomers were formed (exo-norbornene and nortricyclane). The selectivity of exo-norbornene/nortricyclane formation strongly depended on the nature of the ligand in the Pd-catalyst. The best selectivity was revealed when R-MOP was the ligand, while the highest catalytic activity was reached with a dioxalane-containing ligand. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35529130 PMCID: PMC9073203 DOI: 10.1039/c9ra06784a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1Approaches to the synthesis of Si-containing norbornenes: Diels–Alder reaction (a), [2σ + 2σ + 2π]-cycloaddition (b), hydrosilylation (c).
Scheme 2Hydrosilylation of norbornadiene-2,5 by monohydrosilanes and possible products.
The influence of the catalyst nature on the ratio of products in the hydrosilylation of NBD by PMDSa
| Catalyst | Reaction temperature, °C | Reaction time, h | Ratio of products, % | ||
|---|---|---|---|---|---|
|
|
| NTC(Si) | |||
| (acac)Rh(CO)2 | 25 | 48 | 33 | 48 | 19 |
| 48 | 32 | 48 | 20 | ||
| Pt2[(VinSiMe2)2O]3 | 25 | 48 | 55 | 37 | 8 |
| 48 | 75 | 24 | 1 | ||
| (AllPdCl)2/PPh3 | 75 | 72 | — | — | — |
| (AllPdCl)2/PCy3 | 75 | 72 | — | — | — |
| (AllPdCl)2/ | 75 | 48 | 76 | 0 | 24 |
|
| |||||
The reactions were conducted up to the quantitative conversion of NBD. The NBD/silane molar ratio was 1/1.1; Pd-loading was 0.1 mol%, Pt-loading was 0.05 mol%, Rh-loading was 0.05 mol%; molar ratio Pd/phosphine was 1/2; C(NBD) = 2.5 M in the reaction with PMDS and 2.0 M in the reaction with HMTS.
The structures of the catalysts and a ligand.
HMTS was used as a hydrosilane in the reaction.
Influence of the Pd-based compound nature on the conversion of NBD and the selectivity of exo-product formation in the hydrosilylation of NBD by PMDSa
| Catalyst | Temperature, °C | Conversion, % | Selectivity, % |
|---|---|---|---|
| (AllPdCl)2/ | 30 | 0 | — |
| 45 | 10 | 92 | |
| 60 | 55 | 86 | |
| 75 | 86 | 76 | |
| Pd(OAc)2/ | 30 | 0 | — |
| 45 | 24 | 87 | |
| 60 | 60 | 84 | |
| 75 | 70 | 74 |
NBD/silane molar ratio was 1/1.1; Pd/R-MOP molar ratio was 1/2; Pd-loading was 0.1 mol%; C(NBD) = 2.5 M; the reaction time was 24 h.
Fig. 1The ligands used for the hydrosilylation of norbornadiene-2,5.
Fig. 2Time plot of NBD conversion (a) and exo-norbornene formation selectivity (b) for the hydrosilylation of NBD by PMDS (at a ratio of 1/1.1) at 75 °C in the presence of (AllPdCl)2 with various ligands.
Fig. 3Time plot of the conversion (a) and selectivity (b) for the hydrosilylation of NBD by PMDS (in the ratio of 1/1.1) at 75 °C in the presence of (AllPdCl)2 with various binaphthyl-type ligands.
Time and temperature dependence of the conversion and selectivity for the hydrosilylation of NBD by PMDS (in the ratio of 1/1.1) in the presence of the (AllPdCl)2/R-MOP catalysta
| Temperature, °C | Time, d | Conversion, % | Selectivity, % |
|---|---|---|---|
| 25 | 1 | 0 | — |
| 2 | 0 | — | |
| 45 | 1 | 10 | 92 |
| 2 | 37 | 88 | |
| 60 | 1 | 55 | 86 |
| 2 | 77 | 84 | |
| 75 | 1 | 86 | 76 |
| 2 | 99 | 76 |
NBD/silane molar ratio was 1/1.1; (AllPdCl)2/R-MOP (1/4 mol. ratio) was the catalyst; Pd-loading was 0.1 mol%; C(NBD) = 2.5 M.
Fig. 4Time plot of the conversion (a) and selectivity (b) for the hydrosilylation of NBD by PMDS or HMTS (in the ratio of 1/1.1) at 75 °C in the presence of (AllPdCl)2/R-MOP.
Scheme 3Proposed mechanism for the hydrosilylation of NBD by monohydrosilanes.