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The Relationship Between Molecular Structure and Spectroscopic Properties of a Series of Transition Metal-Containing Phenylacetylene Oligomers and Polymers

机译:含一系列过渡金属苯乙烯低聚物和聚合物的分子结构与光谱性能的关系

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To develop novel nonlinear dyes for photonic applications, we synthesized a series of transition metal-containing phenylacetylene oligomers and polymers. The optical properties of these compounds were measured by UV/Vis, fluorescence, and flash photolysis experiments. As the number of oligomer units increased, the transition energies decreased. A solvatochromism experiment suggested the fluorescing state was different from the absorbing state. As a group, the spectra of the polymeric versions of these complexes were red shifted from the spectra of the oligomers. The polymeric complexes had less clear trends relating the number of oligomer units to transition energies. A comparison of a low molecular weight and a high molecular weight polymer showed the degree of polymerization caused spectroscopic shifts comparable to the number of phenylacetylene units in the monomer unit.
机译:为了开发用于光子应用的新型非线性染料,我们合成了一系列含金属苯乙炔寡聚体和聚合物。通过UV / Vis,荧光和闪光光解实验测量这些化合物的光学性质。随着低聚物单元的数量增加,过渡能量降低。溶溶色的试验表明荧光状态与吸收状态不同。作为组,这些配合物的聚合物版本的光谱是从低聚物的光谱移位的红色。聚合物复合物具有较少的透明趋势,将低聚物单元的数量与过渡能量相关联。低分子量和高分子量聚合物的比较表明,聚合程度引起与单体单元中苯乙烯单元数量相当的光谱转化。

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