首页> 外文OA文献 >Adiabatic energy loss in hyperthermal H atom collisions with Cu and Au: A basis for testing the importance of nonadiabatic energy loss.
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Adiabatic energy loss in hyperthermal H atom collisions with Cu and Au: A basis for testing the importance of nonadiabatic energy loss.

机译:高温H原子与Cu和au碰撞时的绝热能量损失:测试非绝热能量损失重要性的基础。

摘要

Nonadiabatic energy transfer from the translational motion (T) of a molecule impinging on metal surface to the metal’s electrons may determine whether the molecule can lose enough energy to adsorb or react. Although it is thus relevant to heterogeneous catalysis, little is known about the strength of the coupling of T to electron hole pair (ehp) excitation. We present adiabatic ab initio molecular dynamics (AIMD) predictions of the scattering of 5 eV H-atoms from Cu and Au surfaces. Calculations of angularly resolved scattering reveal experimentally realizable conditions where only about 2% of the incidence energy is lost to the metal’s phonons. Under these conditions, measurements of the translational energy loss should be able to determine the magnitude of any additional energy loss due to ehp excitation, information that is very valuable to the development of accurate theoretical descriptions of T→ehp coupling.
机译:从撞击到金属表面的分子的平移运动(T)到金属电子的非绝热能量转移,可能会决定该分子是否会失去足够的能量来吸收或反应。尽管因此与非均相催化有关,但对于T与电子空穴对(ehp)激发的耦合强度了解甚少。我们目前从铜和金表面5 eV H原子的散射的绝热从头算分子动力学(AIMD)预测。角分辨散射的计算揭示了可通过实验实现的条件,其中仅约2%的入射能被金属声子损失。在这些条件下,对平移能量损失的测量应该能够确定由于ehp激发引起的任何其他能量损失的幅度,这对于开发T→ehp耦合的精确理论描述非常有价值。

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