Technology Process of C61H100O8Si3
There total 26 articles about C61H100O8Si3 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:
-
With
water; dihydrogen peroxide; sodium hydrogencarbonate;
In
tetrahydrofuran;
at 30 ℃;
for 21h;
DOI:10.1021/ol900769d
- Guidance literature:
-
With
dihydrogen peroxide; sodium hydrogencarbonate;
In
tetrahydrofuran;
at 20 - 30 ℃;
DOI:10.1016/j.tet.2010.05.069
- Guidance literature:
-
Multi-step reaction with 4 steps
1.1: 4,4'-di-tert-butylbiphenyl; lithium / tetrahydrofuran / 1 h / -78 °C / Inert atmosphere
2.1: sulfur trioxide pyridine complex; dimethyl sulfoxide; triethylamine / dichloromethane / 1 h / 0 - 20 °C / Inert atmosphere
3.1: sodium hexamethyldisilazane / tetrahydrofuran / 0.25 h / -78 °C / Inert atmosphere
3.2: -78 - 20 °C / Inert atmosphere
4.1: dihydrogen peroxide; sodium hydrogencarbonate / tetrahydrofuran; water / 21 h / 30 °C
With
4,4'-di-tert-butylbiphenyl; dihydrogen peroxide; sodium hexamethyldisilazane; sulfur trioxide pyridine complex; lithium; sodium hydrogencarbonate; dimethyl sulfoxide; triethylamine;
In
tetrahydrofuran; dichloromethane; water;
2.1: Parikh-Doering oxidation / 3.1: Wittig reaction / 3.2: Wittig reaction;
DOI:10.1021/ja200089f