| Literature DB >> 21678535 |
Tsuneomi Kawasaki1, Sayaka Kamimura, Ai Amihara, Kenta Suzuki, Kenso Soai.
Abstract
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Year: 2011 PMID: 21678535 PMCID: PMC3170706 DOI: 10.1002/anie.201102031
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Scheme 1Enantioselective addition of diisopropylzinc to the pyrimidine-5-carbaldehyde 1 to form the 5-pyrimidyl alkanol 2.
Figure 1a) Structure of aldehyde 1 (space group: ). b) Microscopic image of the single crystal 1 and relative orientation of the prochiral aldehyde 1 at the (001) face. c) Unit cell of crystal 1. The yellow and blue planes correspond to enantiotopic surfaces.
Figure 2Enantioselective addition of diisopropylzinc to aldehyde 1 at an enantiotopic face of the single crystal 1. a) Apart from the single reactive (enantiotopic) surface, crystal 1 was coated with an epoxy resin. b) Enantiotopic parallelogram (001) and () faces were exposed to diisopropylzinc vapor independently.
Correlation between the exposed enantiotopic crystal face of aldehyde 1 and the absolute configuration of the alcohol product 2.[a]
| Entry | Single crystal | Reactive face | |||||
|---|---|---|---|---|---|---|---|
| no. | weight | face | area | yield | |||
| [mg] | index | [mm2] | [mg] | [%] | (config.) | ||
| 1 | #1 | 12 | (001) | 20 | 2.7 | 19 | 46 ( |
| 2 | #2 | n.d. | (001) | n.d. | 1.6 | n.d. | 56 ( |
| 3 | #3 | n.d. | (001) | n.d. | 1.0 | n.d. | 50 ( |
| 4 | #4 | n.d. | (001) | n.d. | 0.9 | n.d. | 67 ( |
| 5 | #5 | 12 | ( | 20 | 2.5 | 18 | 62 ( |
| 6 | #6 | 5 | ( | 8 | 1.7 | 29 | 14 ( |
| 7 | #7 | n.d. | ( | n.d. | 1.3 | n.d. | 30 ( |
| 8 | #8 | n.d. | ( | n.d. | 2.2 | n.d. | 22 ( |
| 9 | #9 | 6 | (001) | 7 | 4.4 | 62 | 55 ( |
| 10 | #9 | 6 | ( | 7 | 5.6 | 80 | 48 ( |
| 11 | #10 | 15 | (001) | 14 | 5.1 | 29 | 31 ( |
| 12 | #10 | 15 | ( | 14 | 4.9 | 28 | 69 ( |
| 13 | #11 | 18 | (001) | 23 | 5.7 | 27 | 43 ( |
| 14 | #11 | 18 | ( | 23 | 5.3 | 25 | 15 ( |
| 15 | #12 | 8 | (001) | 15 | 2.0 | 21 | 45 ( |
| 16 | #12 | 8 | ( | 15 | 2.2 | 23 | 36 ( |
| 17 | #13 | 12 | (001) | 20 | 2.2 | 78 | >99.5 ( |
| 18 | #13 | 12 | ( | 20 | 1.8 | 75 | >99.5 ( |
The addition reaction was performed in a 50 mL flask filled with iPr2Zn vapor (see Figure S1).
Yield of isolated 2 without regard to unreacted aldehyde 1. After the reaction had been quenched, a TLC experiment showed the presence of only the product 2 and unreacted 1.
The ee value was determined by HPLC on a chiral stationary phase (see Figure S2).
Not determined.
Asymmetric autocatalysis with amplification of the ee value was performed with alcohol 2 obtained from the solid–gas reaction (see Table S1). Before the amplification of enantiomeric excess, the ee values for the products in entries 17 and 18 were 44 and 31 %, respectively.