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Optical Properties and van der Waals-London Dispersion Interactions in Inorganic and Biomolecular Assemblies

机译:光学性质和van der Waals-London在无机和生物分子组件中的分散相互作用

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The optical properties and electronic structure of AlPO_4, SiO_2, Type I collagen, and DNA were examined to gain insight into the van der Waals-London dispersion behavior of these materials. Interband optical properties of AlPO_4 and SiO_2 were derived from vacuum ultraviolet spectroscopy and spectroscopic ellipsometry, and showed a strong dependence on the crystals' constituent tetrahedral units, with strong implications for the role of phosphate groups in biological materials. The UV-Vis decadic molar absorption of four DNA oligonucleotides was measured, and showed a strong dependence on composition and stacking sequence. A film of Type I collagen was studied using spectroscopic ellipsometry, and showed a characteristic shoulder in the fundamental absorption edge at 6.05 eV. Ab initio calculations based on density functional theory corroborated the experimental results and provided further insights into the electronic structures, interband transitions and vdW-Ld interaction potentials for these materials.
机译:检查ALPO_4,SiO_2,I型胶原蛋白和DNA的光学性质和电子结构,以深入了解这些材料的范德华伦敦分散行为。 AlPO_4和SiO_2的间带光学性质源自真空紫外光谱和光谱椭圆形测定法,并且显示出对晶体的构成四面体单元的强依赖性,具有强烈对生物材料中磷酸盐基团的作用的强烈影响。测量四种DNA寡核苷酸的UV-Vis倾斜摩尔吸收,并显示出对组合物和堆叠序列的强烈依赖性。使用光谱椭偏测量研究I型胶原蛋白膜,并在6.05eV下显示了基本吸收边缘的特征肩部。基于密度功能理论的AB Initio计算证实了实验结果,并进一步了解这些材料的电子结构,间带式转换和VDW-LD相互作用电位。

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