TY - JOUR
T1 - Unique structural properties of 2,4,6-tri-tert-butylanilide
T2 - Isomerization and switching between separable amide rotamers through the reaction of anilide enolates
AU - Tsukagoshi, Shiori
AU - Ototake, Nobutaka
AU - Ohnishi, Yusuke
AU - Shimizu, Mayu
AU - Kitagawa, Osamu
PY - 2013/5/17
Y1 - 2013/5/17
N2 - Herein, we report a unique structural property of 2,4,6-tri-tert- butylanilide, which can be separated into its amide rotamers at room temperature. Interconversion between the rotamers of anilide enolates occurs readily at room temperature and their reaction with electrophiles gives mixtures of the rotamers in a ratio that depends on the reactivity of the corresponding electrophile. That is, the reaction of the 2,4,6-tri-tert-butylacetanilide enolate with reactive electrophiles, such as allyl bromide or protic acids, gives mixtures of the anilide rotamers in which the E rotamer is the major component, whereas less-reactive electrophiles, such as 1-bromopropane and 2-iodopropane, yield mixtures of the rotamers in which the Z rotamer is the major component. The rotameric ratio of the product is also strongly dependent on the reactivity of the anilide enolate. Switching between the anilide rotamers can be achieved through protonation of a less-reactive enolate by a less-reactive protic acid and thermal isomerization of the anilide.
AB - Herein, we report a unique structural property of 2,4,6-tri-tert- butylanilide, which can be separated into its amide rotamers at room temperature. Interconversion between the rotamers of anilide enolates occurs readily at room temperature and their reaction with electrophiles gives mixtures of the rotamers in a ratio that depends on the reactivity of the corresponding electrophile. That is, the reaction of the 2,4,6-tri-tert-butylacetanilide enolate with reactive electrophiles, such as allyl bromide or protic acids, gives mixtures of the anilide rotamers in which the E rotamer is the major component, whereas less-reactive electrophiles, such as 1-bromopropane and 2-iodopropane, yield mixtures of the rotamers in which the Z rotamer is the major component. The rotameric ratio of the product is also strongly dependent on the reactivity of the anilide enolate. Switching between the anilide rotamers can be achieved through protonation of a less-reactive enolate by a less-reactive protic acid and thermal isomerization of the anilide.
KW - amides
KW - electrophilic addition
KW - enolates
KW - isomerization
KW - rotamers
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U2 - 10.1002/chem.201300201
DO - 10.1002/chem.201300201
M3 - Article
C2 - 23536423
AN - SCOPUS:84877769669
SN - 0947-6539
VL - 19
SP - 6845
EP - 6850
JO - Chemistry - A European Journal
JF - Chemistry - A European Journal
IS - 21
ER -