...
首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Relating Interfacial Order to Sum Frequency Generation with Ab Initio Simulations of the Aqueous Al2O3(0001) and (11(2)over-bar0) Interfaces
【24h】

Relating Interfacial Order to Sum Frequency Generation with Ab Initio Simulations of the Aqueous Al2O3(0001) and (11(2)over-bar0) Interfaces

机译:将界面顺序与AB Initio Simulations与AB IN2O3(0001)和(11(2)over-Bar0)接口进行频率生成

获取原文
获取原文并翻译 | 示例

摘要

We use density functional theory molecular dynamics simulations to investigate the structure, dynamics, and vibrational sum frequency generation (vSFG) spectra at the Al2O3(0001)-H2O and Al2O3(11 (2) over bar0)-H2O interfaces. We find that the differences in the vSFG spectra between the two interfaces can be explained by significantly weaker surface-water interactions at the (0001) vs (11 (2) over bar0) interface. The weaker interactions at the (0001) surface are caused by the flat surface plane and high density of OH groups, leading to a decoupling of the vibrational modes of the surface OH groups and H2O molecules. The (0001) vSFG spectrum thus displays two well-separated peaks at the near-neutral pH, in contrast to the vSFG spectrum of the corrugated (11 (2) over bar0) interface, which has stronger surface-water interactions and thereby a narrower band in the vSFG spectrum with closely spaced peaks. By simulating the interfaces with both the Perdew Burke Ernzerhof (PBE)-Tkatchenko-Scheffler and revised PBE (RPBE) functionals, we find that a proper description of the separation of surface and solution H-bond modes is essential to obtain accurate SFG spectra. The RPBE functional was unable to accurately model the H-bonds of H2O and surface aluminols simultaneously. Finally, we use the H-bond lifetimes and the tetrahedral order parameter for H2O to conclude that water at the (0001) surface is more ordered than at the (11 (2) over bar0) surface, in contrast to prior interpretations of of X-ray reflectivity and vSFG experiments, highlighting the importance of atomistic models of the H-bond structure and dynamics of the water-oxide interfaces.
机译:我们使用密度泛函理论的分子动力学模拟来研究Al2O3(0001)-H2O和Al2O3(11(2)上方)-H2O接口的结构,动力学和振动和频率产生(VSFG)光谱。我们发现,两个接口之间的VSFG光谱的差异可以通过显着较弱的(0001)Vs(11(2)上)接口显着较弱的表面 - 水相互作用来解释。 (0001)表面的较弱相互作用是由平坦表面平面和OH基团的高密度引起的,导致表面OH基团和H 2 O分子的振动模式的去耦。因此(0001)VSFG频谱因此在近中性pH下显示两个分离良好的峰,与波纹状的VSFG光谱相比,波纹状(在Bar0上的11(2))界面具有更强的表面 - 水相互作用,从而较窄在VSFG频谱中的频带,具有紧密间隔的峰值。通过使用百分点Burke Ernzerhof(PBE)-Tkatchenko-Scheffler和修改的PBE(RPBE)功能模拟接口,我们发现对表面和解决方案的分离的正确描述对于获得精确的SFG光谱是必不可少的。 RPBE功能不能同时准确地模拟H2O和表面铝的H键。最后,我们使用H键的寿命和四面体顺序参数来得出结论(0001)表面的水比在(11(2)上)表面上更具订购,与X的先前解释相反-REAY反射率和VSFG实验,突出了H键结构的原子模型的重要性和氧化氧化物界面的动态。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号