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The title reaction proceeds via a one- and two-step mechanism along the 3A" and 3A’ surfaces, respectively. The 3A’ excited state surface has a lower barrier than the 3A" ground state surface (11.6 and 16.0 kcal/mol, respectively). We suggest that, at low energies, the reaction proceeds along the A’ surface and then makes an intersystem crossing to the A" surface and yields the ground state product VO (3∑-), which may explain the small VO cross-section at low energies observed in the experiment  相似文献   
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