A method for preparing gem-diboron compounds by selective 1,1-diboration of alkenes
A compound and selective technology, applied in the field of selective 1,1-diboronation of olefins to prepare geminal diboron compounds, can solve the problems of reduced atom economy, limited substrate source, poor compatibility of functional groups, etc. Product separation and purification, improved atom economy, mild reaction conditions
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Embodiment 1
[0022] Example 1 A method for the selective 1,1-diboration of olefins to prepare gem-diboron compounds:
[0023]
[0024] Add Cp to the reaction tube sequentially 2 ZrCl 2 (0.01 mmol, 2.9 mg), MeOLi (0.2 mmol, 7.6 mg), toluene (1 mL), pinacol borane 2a (0.6 mmol, 87 μL), styrene 1a (0.2 mmol, 23 μL), in nitrogen (1atm ) atmosphere at 100 °C for 8 h with stirring. GC-MS detection yield was 88%.
Embodiment 2
[0025] Example 2 A method for the selective 1,1-diboration of olefins to prepare gem-diboron compounds:
[0026]
[0027] Add Cp to the reaction tube sequentially 2 ZrCl 2 (0.01 mmol, 2.9 mg), MeOLi (0.2 mmol, 7.6 mg), toluene (1 mL), pinacol borane 2a (0.6 mmol, 87 μL), styrene 1a (0.2 mmol, 23 μL), in nitrogen (1atm ) atmosphere at 130 °C for 2 h with stirring. GC-MS detection yield was 92%.
Embodiment 3
[0028] Example 3 A method for the selective 1,1-diboration of olefins to prepare gem-diboron compounds:
[0029]
[0030] Add Cp to the reaction tube sequentially 2 ZrCl 2 (0.01 mmol, 2.9 mg), MeOLi (0.2 mmol, 7.6 mg), toluene (1 mL), pinacol borane 2a (0.6 mmol, 87 μL), styrene 1a (0.2 mmol, 23 μL), in nitrogen (1atm ) atmosphere at 80 °C for 16 h with stirring. GC-MS detection yield was 81%.
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