Please use this identifier to cite or link to this item: http://nopr.niscpr.res.in/handle/123456789/25760
Title: A symmetry forbidden reaction and the BEBO model for locating the transition state
Authors: Saha, Rajendra
Chaudhury, Pinaki
Mondal, Chandan Kumar
Bhattacharyya, S P
Issue Date: Mar-2000
Publisher: NISCAIR-CSIR, India
Abstract: The reaction H2+I2 =2HI has been studied using MO theory and the bond energy bond order (BEBO) model. Elementary considerations show that the reaction path through the intuitive 4-center trapezoidal ransition state is symmetry forbidden. A BEBO desccription of the process with the traditional active bond order conservation condition in force (nH2 + nI2 + 2nHI= 2, nA2 being bond order of nA2) does not lead to a transition state (TS) for the reaction, reflecting in a way the effect of symmetry forbiddenness. When we look for minimum energy paths (MEPs) under nonlinear BO constraints, only a specific choice of the constraint condition is seen to lead to a first order saddle point on the potential energy surface (PES), which is located by a stochastic as well as a deterministic method. The associated TS has zero iodine-iodine bond order and appears to occur early in the nH2, coordinate but late in the nHI coordinate. Semiempirical (AM1) calculations as well as ab initio MO-SCF calculations asssuming a termolecular mechanism predict qualitatively similar TS. The implications of the findings are analyzed.
Page(s): 281-290
ISSN: 0975-0975(Online); 0376-4710(Print)
Appears in Collections:IJC-A Vol.39A(01-03) [January-March 2000]

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