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Theory of solvatochromic shifts in nonpolar solvents reveals a new spectroscopic rule

机译:非极性溶剂中溶剂变色理论揭示了新的光谱学规律

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摘要

An expression of unexpected simplicity is derived for the shift in optical transition energies of solute molecules in nonpolar solvents. The expression reveals a new spectroscopic rule that says: The higher the excited state of the solute, the larger the solvatochromic red shift. A puzzle formulated >50 years ago by Bayliss is solved. Bayliss, based on arguments from classical physics, assumed that the shift scales with the oscillator strength of the solute transition, but noted strong quantitative deviations from this rule in experiments. As the present expression shows, the shift does not depend on the oscillator strength of the transition, but reflects the change in dispersive solute–solvent interactions between the ground and excited states of the solute, that are determined by the anisotropy of intramolecular electron correlation. The theory is applied to explain the solvatochromic shifts of the two lowest electronic excitations of bacteriochlorophyll a and bacteriopheophytin a.
机译:对于非极性溶剂中溶质分子的光学跃迁能的变化,得出了意想不到的简单表达。该表达式揭示了一条新的光谱规则,该规则说:溶质的激发态越高,溶剂变色红移越大。 Bayliss于50年前提出了一个难题。基于经典物理学的论证,Bayliss假定位移随溶质跃迁的振子强度成比例变化,但在实验中注意到与该规则的定量偏差很大。如本表达式所示,该位移不取决于跃迁的振荡器强度,而是反映了由分子内电子相关性的各向异性确定的基态和溶质的激发态之间的分散溶质-溶剂相互作用的变化。该理论用于解释细菌叶绿素a和细菌脱镁叶绿素a的两个最低电子激发的溶剂化变色。

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