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首页> 外文期刊>RSC Advances >The fluorescence quenching phenomenon in newly synthesized blue fluorescence protein molecule caused by anchoring group substitution: a DFT and TD-DFT study
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The fluorescence quenching phenomenon in newly synthesized blue fluorescence protein molecule caused by anchoring group substitution: a DFT and TD-DFT study

机译:锚定基团取代导致新合成的蓝色荧光蛋白分子发生荧光猝灭现象:DFT和TD-DFT研究

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摘要

The newly synthesized blue fluorescence protein (BFP) molecule combined with its derivatives were fully investigated using DFT and TD-DFT methods. The frontier molecular orbitals and NBO charges indicate that the intramolecular benzene ring in the BFP molecule can inhibit the charge redistribution after photo-excitation effectively. The substitution of malonic and malononitrile groups can create the fluorescence quenching phenomenon, which may be caused by their participation in the excited state charge redistribution and act as important electron-donating groups. Also, these substitutions can enhance the configuration stability in the S1 state and hinder the formation of a metastable structure. The malononitrile group substitution can significantly decrease the energy barrier in the S1 state and promote proton transfer.
机译:使用DFT和TD-DFT方法对新合成的蓝色荧光蛋白(BFP)分子及其衍生物进行了充分研究。前沿的分子轨道和NBO电荷表明BFP分子中的分子内苯环可以有效地抑制光激发后的电荷重新分布。丙二酸和丙二腈基团的取代会产生荧光猝灭现象,这可能是由于它们参与激发态电荷的重新分布而引起的,并作为重要的供电子基团。同样,这些取代可以增强S 1 状态下的构型稳定性,并阻碍亚稳结构的形成。丙二腈基团的取代可显着降低S 1 状态下的能垒并促进质子转移。

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