Buscemi Silvestre, Pace Andrea, Piccionello Antonio Palumbo, Pibiri Ivana, Vivona Nicolò, Giorgi Gianluca, Mazzanti Andrea, Spinelli Domenico
Dipartimento di Chimica Organica E. Paterno, Università degli Studi di Palermo,Viale delle Scienze-Parco d'Orleans II, I-90128 Palermo, Italy.
J Org Chem. 2006 Oct 13;71(21):8106-13. doi: 10.1021/jo061251e.
The hydrazinolysis reaction of 5-perfluoroalkyl-1,2,4-oxadiazoles with hydrazine or methylhydrazine as bidentate nucleophiles has been investigated. The reaction occurred through the addition of the bidentate nucleophile to the C(5)-N(4) double bond of the 1,2,4-oxadiazole followed by ring-opening and ring-closure (ANRORC) involving the second nucleophilic site of the reagent. This ring-closure step could involve either the original C(3) of the 1,2,4-oxadiazole (giving a five-to-five membered ring rearrangement) or an additional electrophilic center linked to it (exploiting a five-to-six membered ring rearrangement). An alternative initial nucleophilic attack may involve the additional electrophilic center linked at C(3), that is the carbonyl group, leading to the formation of the hydrazones which undergo the Boulton-Katritzky rearrangement (BKR). The chosen reaction path is a function of the used nucleophile and of the nature of the substituent at C(3). At variance with previous hypotheses, when methylhydrazine was used, the observed regiochemistry always showed the preferred initial attack by the less hindered NH(2) end of the nucleophile on C(5). Moreover, new spectroscopic evidence allowed the assignment of correct structures to the products formed by reaction of 5-perfluoroalkyl-3-phenyl-1,2,4-oxadiazoles with methylhydrazine.
研究了5-全氟烷基-1,2,4-恶二唑与肼或甲基肼作为双齿亲核试剂的肼解反应。该反应通过双齿亲核试剂加成到1,2,4-恶二唑的C(5)-N(4)双键上,随后发生开环和闭环(ANRORC),涉及试剂的第二个亲核位点。这个闭环步骤可能涉及1,2,4-恶二唑原来的C(3)(产生五元到五元环重排)或与之相连的另一个亲电中心(利用五元到六元环重排)。另一种初始亲核攻击可能涉及连接在C(3)上的另一个亲电中心,即羰基,导致腙的形成,腙再进行Boulton-Katritzky重排(BKR)。所选择的反应路径取决于所用的亲核试剂和C(3)上取代基的性质。与先前的假设不同,当使用甲基肼时,观察到的区域化学总是显示亲核试剂中空间位阻较小的NH(2)端优先对C(5)进行初始攻击。此外,新的光谱证据使我们能够确定5-全氟烷基-3-苯基-1,2,4-恶二唑与甲基肼反应形成的产物的正确结构。