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The application of quasi-elastic neutron scattering techniques (QENS) in surface diffusion studies

机译:准弹性中子散射技术(QENS)在表面扩散研究中的应用

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摘要

Neutron scattering techniques such as quasi-elastic neutron scattering, QENS, have proven to be well-suited tools for studying structure and dynamics of surface adsorbed molecules. In contrast to many more widely used surface science techniques neutron scattering allows the microscopic characterization of samples under a wide range of thermodynamic conditions, as the samples are not constrained to ultra high vacuum environment. Moreover, neutron scattering allows the separation of coherent and incoherent scattering, giving access to different diffusive mechanisms such as single particle diffusion, mass transport, rotations, or vibrations. In this paper we will review recent progress and the state-of-the-art in neutron scattering experiments on surface adsorbed molecules in the sub-monolayer coverage range with a specific emphasis on studies of carbon and other high surface density substrates. We will also cover recent progress in theoretical modeling, since the usefulness of neutron scattering data on surface dynamics can be strongly enhanced by computational modeling, such as molecular dynamics (MD) simulations and the development of analytical models.
机译:诸如准弹性中子散射,QENS等中子散射技术已被证明是研究表面吸附分子的结构和动力学的理想工具。与许多更广泛使用的表面科学技术相比,中子散射可以在广泛的热力学条件下对样品进行微观表征,因为样品不受限于超高真空环境。此外,中子散射可将相干和非相干散射分离,从而可以使用不同的扩散机制,例如单粒子扩散,质量传输,旋转或振动。在本文中,我们将回顾亚单层覆盖范围内的表面吸附分子的中子散射实验的最新进展和最新技术,重点是研究碳和其他高表面密度基质。我们还将介绍理论建模的最新进展,因为中子散射数据对表面动力学的有用性可以通过计算建模(例如分子动力学(MD)模拟和分析模型的开发)大大增强。

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