Rpa. Bettens et Ma. Collins, POTENTIAL-ENERGY SURFACES AND DYNAMICS FOR THE REACTIONS BETWEEN C(P-3) AND H-3(+)((1)A(1)'), The Journal of chemical physics, 108(6), 1998, pp. 2424-2433
Ab initio MCSCF/6-31G* adiabatic potential energy surfaces have been
determined for both the ground and first excited states of triplet CH3
+. Classical trajectory studies of the collision of C(P-3) with H-3(+)
((1)A(1)') on both surfaces yield an overall rate coefficient of 2.1 x
10(-9) cm(3) s(-1) for the formation of CH+ ((3) Pi) + H-2 at 10 K, i
n good agreement with earlier work. A rate coefficient of 4.9 x 10(-11
) cm(3) s(-1) at 10 K has been determined for the previously unknown r
eaction which produces CH2+((2)A(1)) + H. The properties of the reacti
on products are examined and the accuracy of the potential energy surf
aces is investigated. (C) 1998 American Institute of Physics.