An ab initio molecular orbital study on the gas-phase rapid reaction of the silicon cation Si with ammonia |
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Authors: | Song Ye Shushan Dai |
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Institution: | Department of Chemistry, Yunnan University, Kunming, 650091 China |
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Abstract: | The gas-phase rapid ion-molecule reaction Si+ (2P) + NH3→ SiNH2+ + H is theoretically investigated by the ab initio molecular orbital methods. Several possible pathways (A, B, C) on its potential energy surface have been examined, discussed and compared. Theoretical calculations indicate that pathway A is favourable in energy and that the reaction begins by forming a collision complex of the ion-dipole molecule Si-NH+3, which forms with no barrier into the first energy well of the reaction coordinate. Migration of an H atom from an N atom to a Si atom forms the intermediate HSi-NH+2, which corresponds to the second energy well and can fragment to the observed product SiNH+2 by losing an H atom from the Si atom. The barriers for migration and fragmentation are 52.5 and 38.6 kcal mol?1 respectively. Pathway A has a negative activation energy of ?42.1 kcal mol?1. |
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