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BOPHY 衍生物在生物传感中潜在应用的 TD-DFT-SOS-CIS(D) 联合研究。

Combined TD-DFT-SOS-CIS(D) Study of BOPHY Derivatives with Potential Application in Biosensing.

机构信息

Laboratoire Modélisation et Simulation Multi-Échelle, MSME UMR 8208 CNRS, Université Paris-Est , 5 bd Descartes, 77454 Marne-la-Vallée, France.

Institut des Sciences Chimiques de Rennes, UMR 6226 CNRS-Université de Rennes 1 , 263 Avenue du Général Leclerc, 35042 Rennes Cedex, France.

出版信息

J Phys Chem B. 2017 Dec 7;121(48):10850-10858. doi: 10.1021/acs.jpcb.7b09698. Epub 2017 Nov 21.

Abstract

A set of 13 bis(difluoroboron)-1,2-bis((pyrrol-2-yl)methylene)hydrazine (BOPHY) dyes is studied through a hybrid time-dependent density functional theory (TD-DFT)-scaled opposite spin-configuration interaction singles with a double correction [SOS-CIS(D)] approach accounting for solvent effects, to shed light onto the structure-property relationships of these recently developed chromophores. In the first step, we calculate the absorption-fluorescence crossing points with refined TD-DFT models considering the influences of both vibrational and solvent contributions. We found that the systematic overestimation of the 0-0 energies is effectively reduced by combining polarizable continuum model-TD-DFT with a scaled opposite spin-configuration interaction singles with a double correction [SOS-CIS(D)]. Next, for a representative system, the vibrationally resolved spectrum within the harmonic approximation is computed on the basis of TD-DFT vibrational signatures and an excellent match with experiment is found. Finally, the influence of different lateral groups on the spectroscopic properties is rationalized by investigating charge transfer parameters and examining electronic density difference maps. It is found that one can tune the position of the absorption/emission maxima by a judicious choice of the lateral substituents or by using π-extended segments. The largest absorption and emission wavelengths as well as the largest Stokes shifts are obtained for BOPHYs containing strong electron-donor dimethylaminophenyl groups attached to the α-positions of the pyrrole units through vinyl linkers, making these chromophores promising candidates for bioluminescence applications.

摘要

一套 13 个双(二氟硼)-1,2-双((吡咯-2-基)亚甲基)肼(BOPHY)染料通过混合时变密度泛函理论(TD-DFT)-比例相反自旋组态相互作用单重态与双校正[SOS-CIS(D)]方法进行研究,以阐明这些最近开发的发色团的结构-性质关系。在第一步中,我们通过考虑振动和溶剂贡献的影响,使用改进的 TD-DFT 模型计算吸收-荧光交叉点。我们发现,通过将极化连续体模型-TD-DFT 与比例相反自旋组态相互作用单重态与双校正[SOS-CIS(D)]相结合,可以有效地降低 0-0 能量的系统高估。接下来,对于一个代表性体系,在谐波近似的基础上计算了振动分辨光谱,发现与实验结果非常吻合。最后,通过研究电荷转移参数和检查电子密度差图,解释了不同侧基对光谱性质的影响。可以通过明智地选择侧基或使用π扩展片段来调节吸收/发射最大值的位置。含有通过乙烯基键连接到吡咯单元的α-位置的强供电子二甲氨基苯基基团的 BOPHY 获得最大的吸收和发射波长以及最大的斯托克斯位移,使这些发色团成为生物发光应用的有前途的候选者。

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