TY - JOUR
T1 - (2 + 2) Cycloaddition of benzyne to endohedral metallofullerenes M3NatC80 (M = Sc, Y)
T2 - A rotating-intermediate mechanism
AU - Yang, Tao
AU - Nagase, Shigeru
AU - Akasaka, Takeshi
AU - Poblet, Josep M.
AU - Houk, K. N.
AU - Ehara, Masahiro
AU - Zhao, Xiang
N1 - Publisher Copyright:
© 2015 American Chemical Society.
PY - 2015/6/3
Y1 - 2015/6/3
N2 - The reaction mechanism and origin of regioselectivity of (2 + 2) cycloadditions of benzyne to endohedral metallofullerenes M3NatC80 (M = Sc, Y) were investigated with density functional calculations. The reaction was demonstrated to follow a diradical mechanism rather than a carbene mechanism, in which the formation of the diradical intermediate is the rate-determining step. Through rotation of benzyne moiety on the fullerene surface, the diradical intermediate on 566 site could isomerize to two new diradical intermediates which give rise to two distinct [5,6] and [6,6] benzoadducts, respectively. However, the diradical intermediate on 666 site only produces the [6,6] benzoadduct. The nature of the endohedral cluster not only influences the regioselectivity, but also determines the cycloadduct geometry. For Sc3NatC80, the [5,6] benzoadduct is preferred kinetically and thermodynamically, whereas in the case of Y3NatC80, both [5,6] and [6,6] benzoadducts are favorable. In contrast to closed-cage benzoadducts of Sc3NatC80, Y3NatC80 affords open-cage benzoadducts, making it the first example that the endohedral cluster could alter cycloadducts from the closed cage to open cage. With further analysis, it is revealed that the origin of regioselectivity results from the local strain energy of the fullerene cage.
AB - The reaction mechanism and origin of regioselectivity of (2 + 2) cycloadditions of benzyne to endohedral metallofullerenes M3NatC80 (M = Sc, Y) were investigated with density functional calculations. The reaction was demonstrated to follow a diradical mechanism rather than a carbene mechanism, in which the formation of the diradical intermediate is the rate-determining step. Through rotation of benzyne moiety on the fullerene surface, the diradical intermediate on 566 site could isomerize to two new diradical intermediates which give rise to two distinct [5,6] and [6,6] benzoadducts, respectively. However, the diradical intermediate on 666 site only produces the [6,6] benzoadduct. The nature of the endohedral cluster not only influences the regioselectivity, but also determines the cycloadduct geometry. For Sc3NatC80, the [5,6] benzoadduct is preferred kinetically and thermodynamically, whereas in the case of Y3NatC80, both [5,6] and [6,6] benzoadducts are favorable. In contrast to closed-cage benzoadducts of Sc3NatC80, Y3NatC80 affords open-cage benzoadducts, making it the first example that the endohedral cluster could alter cycloadducts from the closed cage to open cage. With further analysis, it is revealed that the origin of regioselectivity results from the local strain energy of the fullerene cage.
UR - https://www.scopus.com/pages/publications/84930626965
U2 - 10.1021/jacs.5b01444
DO - 10.1021/jacs.5b01444
M3 - 文章
C2 - 25971783
AN - SCOPUS:84930626965
SN - 0002-7863
VL - 137
SP - 6820
EP - 6828
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 21
ER -