Diastereoselective Synthesis of Axially Chiral Xylose-Derived 1,3-Disubstituted Alkoxyallenes: Scope, Structure, and Mechanism
Author(s) -
Moustapha Fortunato,
Yves Gimbert,
Élodie Rousset,
Pédro Lameiras,
Agathe Martinez,
Sylvain Gatard,
Richard PlantierRoyon,
Florian Jaroschik
Publication year - 2020
Publication title -
the journal of organic chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.2
H-Index - 228
eISSN - 1520-6904
pISSN - 0022-3263
DOI - 10.1021/acs.joc.0c01240
Subject(s) - chemistry , scope (computer science) , mechanism (biology) , axial symmetry , xylose , enantioselective synthesis , combinatorial chemistry , computational chemistry , stereochemistry , organic chemistry , catalysis , geometry , philosophy , mathematics , epistemology , computer science , fermentation , programming language
The deprotonation of differently substituted propargyl xylosides with s -BuLi/TMEDA followed by protonation with -butanol at -115 °C provided a range of new axially chiral 1,3-disubstituted alkoxyallenes in a diastereoselective way. Numerous reaction parameters such as solvent, temperature, or protonating agent were examined as well as protecting groups on the xyloside moiety and the influence of the substituents on the alkyne part. The configuration of the main diastereoisomer of 3-methyl-1-xyloside-allene was determined for the first time by single-crystal X-ray diffraction analysis and nOe NMR experiments. Furthermore, DFT calculations on the propargyl/allenyl lithium intermediates formed in the course of the deprotonation reaction provided new structural insights of these complexes. The subsequent protonation process with alcohols was investigated by theoretical surface exploration, revealing the importance of the approach of the alcohol toward the lithium compounds on the reaction outcome.
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