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On the origin of π-facial diastereoselectivity in nucleophilic additions to chiral carbonyl compounds. 2. Calculated transition state structures for the addition of nucleophiles to propionaldehyde 1, chloroacetyldehyde 2, and 2-chloropropionaldehyde 3.

✍ Scribed by G Frenking; K.F Köhler; M.T Reetz


Publisher
Elsevier Science
Year
1991
Tongue
French
Weight
773 KB
Volume
47
Category
Article
ISSN
0040-4020

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✦ Synopsis


Summarv : The transition state structures for addition of LiH to 1, 2, and 3 are computed and analyzed at MP2/6-3lG(d)//HF/6_3lG(d).

Three factors are found to be important for the relative energies of the transition state structures: (i) the conformational energy of the aldehyde; (ii) the interactions between the nucleophile and the aldehyde; (iii) the counter ion effect. The relative energies of the lowest lying transition state structures for addition of LiH and CN-to 3 leading to the major and minor product are not determined by the interactions between the attacking nucleophile and the aldehyde, but by the conformational energies of the aldehyde in the two transition states. The interaction between LiH and 3 is in fact more favorable in the transition state leading to the minor isomer. l*a (-LiH) -191.9443 0.0 -192.5090 0.0 l*b (-LiH) -191.9427 1.0 -192.5071 1.2 l*c (-LiH) -191.9431 0.8 -192.5079 0.7 2*a -619


📜 SIMILAR VOLUMES


On the origin of π-facial diastereoselec
✍ G Frenking; K.F Köhler; M.T Reetz 📂 Article 📅 1991 🏛 Elsevier Science 🌐 French ⚖ 757 KB

## SummarV : The conformational profiles for rotation around the C-C(=O) bond a and the energy minimum conformations are calculated for propionaldehyde 1, chloroacetaldehyde 2, MP2/6-3lG(d)//HF/6\_3lG(d). and 2-chloropropionaldehyde 3 at a function of a for 1, 2, The energy level of the LUMO is ca