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Computing the Absorption and Emission Spectra of 5-Methylcytidine in Different Solvents: A Test-Case for Different Solvation Models

机译:计算5-甲基胞嘧啶在不同溶剂中的吸收和发射光谱:不同溶剂化模型的测试案例

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摘要

The optical spectra of 5-methylcytidine in three different solvents (tetrahydrofuran, acetonitrile, and water) is measured, showing that both the absorption and the emission maximum in water are significantly blue-shifted (0.08 eV). The absorption spectra are simulated based on CAM-B3LYP/TD-DFT calculations but including solvent effects with three different approaches: (i) a hybrid implicit/explicit full quantum mechanical approach, (ii) a mixed QM/MM static approach, and (iii) a QM/MM method exploiting the structures issuing from molecular dynamics classical simulations. Ab-initio Molecular dynamics simulations based on CAM-B3LYP functionals have also been performed. The adopted approaches all reproduce the main features of the experimental spectra, giving insights on the chemical-physical effects responsible for the solvent shifts in the spectra of 5-methylcytidine and providing the basis for discussing advantages and limitations of the adopted solvation models.
机译:测量了在三种不同溶剂(四氢呋喃,乙腈和水中)中的5-甲基胞嘧啶的光谱,表明水中的吸收和发射最大值均显着蓝移(0.08 eV)。吸收光谱是基于CAM-B3LYP / TD-DFT计算得出的,但包括三种不同方法的溶剂效应:(i)混合隐式/显式全量子力学方法,(ii)混合QM / MM静态方法,以及( iii)QM / MM方法,利用分子动力学经典模拟中的结构。从头开始分子动力学模拟基于CAM-B3LYP功能。所采用的方法均重现了实验光谱的主要特征,提供了对造成5-甲基胞苷光谱中溶剂迁移的化学物理效应的深入了解,并为讨论所采用的溶剂化模型的优缺点提供了基础。

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