With the optimal conditions in hand, we then probed the scope of yne–allylic acetates for this asymmetric [4 + 1] annulation reaction (
Scheme 2). A series of aryl yne–allylic acetates with electron-donating or -withdrawing substituents reacted smoothly, affording spiropyrazolones in excellent yields with good enantioselectivities and moderated diastereoselectivities. Halogens and cyano group at the
para-position in yne–allylic acetates were compatible, giving the spirocycles products
3b–
3d in good yields with excellent
ee values. The reaction tolerated
meta- and
ortho-substituted aryl yne–allylic acetates (
3e–
3h) very well. Even yne–allylic acetetes adjacent to the more sterically bulky 2,6-dimethylphenyl group reacted smoothly, resulting in the desired product
3i with an excellent yield, albeit with a decreased
ee value. However, the less reactive aliphatic yne–allylic acetates led to diminished yield. The Me-substituted yne–allylic acetate provided annulation product
3j in 99%/99%
ee values. However, the
ee values of the more sterically bulky
t-Bu-substituted substrate decreased to 82%/61% (
3k). Remarkably, thiophenyl-substituted yne–allylic ester delivered the corresponding product
3l with good yield and excellent
ee values. Subsequently, various pyrazolones were explored in the asymmetric [4 + 1] annulation (
Scheme 3). Different aryl-substituents at the 3-position of the pyrazolones, delivered the desired spiropyrazolones
3m, 3n, and
3o in good yields with excellent
ee values. Notably, the bulky isopropyl at the 3-position of the pyrazolones also showed good compatibility, yielding the desired annulation product
3p in excellent yield, albeit with a decrease in
ee. Various
N-aryl groups of the pyrazolones were well-tolerated, giving
3q–
3u in good yields and moderate enantioselectivity. Importantly,
N-alkyl group of the pyrazolones also reacted well, albeit with low dr values (
3v, 3w). Notably, two diastereomers of
syn-3w and
anti-3w can be isolated by column chromatography. We are delighted to observe that our developed method enables the isolation of some products. Finally, the absolute configurations of product
syn-3w (CCDC: 2306695) and
anti-3w (CCDC: 2306696) were unambiguously assigned by X-ray diffraction analysis (
Scheme 4).