Technology Process of C52H62O14Si
There total 1 articles about C52H62O14Si which
guide to synthetic route it.
The literature collected by LookChem mainly comes from the sharing of users and the free literature resources found by Internet computing technology. We keep the original model of the professional version of literature to make it easier and faster for users to retrieve and use. At the same time, we analyze and calculate the most feasible synthesis route with the highest yield for your reference as below:
synthetic route:
- Guidance literature:
-
Multi-step reaction with 11 steps
1: 100 percent / pyridine / 3 h / 20 °C
2: TsN3; Et3N; DBU / acetonitrile / 16 h / 20 °C
3: 80 percent / Cu(acac)2 / 70 h / 60 °C
4: ([Bu]2Sn(Cl))2O / ethanol / 24 h / Heating
5: 90 percent
6: 73 percent / NaBH3CN / acetic acid
7: HCO2NH4 / 10 percent Pd/C / acetic acid / 3 h / 20 °C
8: aq. NaHCO3 / 3 h / 20 °C
9: 87 percent / DEAD; PPh3 / 1 h / 0 °C
10: DMAP / pyridine
11: 0.1 N HCl / methanol / 3 h / 60 °C
With
hydrogenchloride; dmap; copper acetylacetonate; 4-toluenesulfonyl azide; ammonium formate; 1,3-dichlorotetrabutyldistannoxane; sodium cyanoborohydride; sodium hydrogencarbonate; 1,8-diazabicyclo[5.4.0]undec-7-ene; triethylamine; triphenylphosphine; diethylazodicarboxylate;
palladium on activated charcoal;
In
pyridine; methanol; ethanol; acetic acid; acetonitrile;
1: Condensation / 2: Diazotization / 3: Substitution / 4: transesterification / 5: Swern oxid. / 6: Reduction / 7: Reduction / 8: Acylation / 9: Dehydration / 10: Acetylation / 11: Hydrolysis;
DOI:10.1016/S0040-4039(99)02056-0