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Intramolecular water-splitting reaction in single collisions of water ions with surfaces

机译:水离子与表面的单次碰撞中的分子内水分解反应

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摘要

We report the direct formation of H2 and O pair ions through single collisions of water ions with metal surfaces at hyperthermal energies. This unusual intramolecular reaction proceeds also for heavy and semi-heavy water, producing molecular D2 and HD ions. The selectivity of this water splitting channel is estimated at being between 9 and 13% versus complete dissociation. The collision kinematics support the hypothesis of a water molecule colliding with a single surface atom, thereby forming an excited precursor (Rydberg?) state, which dissociates subsequently to form the molecular hydrogen ion with high kinetic energy. Inelastic energy loss considerations yield an estimate for the energy of the excited precursor state of ∼7 eV and ∼11 eV at low and high incidence energies. These energies are close to the à state (1B1, 7.5 eV) and B state (1A1, 9.7 eV) of excited water (Rydberg states).
机译:我们报道了水离子与金属表面在高温能量下的单次碰撞直接形成了H2和O对离子。对于重水和半重水,这种异常的分子内反应也会进行,产生分子D2和HD离子。相对于完全解离,该水分解通道的选择性估计为9-13%。碰撞运动学支持水分子与单个表面原子碰撞的假说,从而形成激发的前体(Rydberg?)状态,该状态随后解离形成具有高动能的分子氢离子。考虑到非弹性能量损失,在低和高入射能量下,激发前体态的能量约为7 eV和11 eV。这些能量接近激发水的Ã状态( 1 B1,7.5 eV)和B状态( 1 A1,9.7 eV)(里德堡状态)。

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