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N-琥珀酰亚胺基联噻吩的光学性质及其与生物分子结合的影响:耦合簇方法和含时密度泛函理论计算与实验的比较

Optical properties of N-succinimidyl bithiophene and the effects of the binding to biomolecules: comparison between coupled-cluster and time-dependent density functional theory calculations and experiments.

作者信息

Fabiano E, Della Sala F, Barbarella G, Lattante S, Anni M, Sotgiu G, Hättig C, Cingolani R, Gigli G

机构信息

National Nanotechnology Laboratory of INFM-CNR, Distretto Tecnologico, Università degli Studi di Lecce, Via per Arnesano, I-73100 Lecce, Italy.

出版信息

J Phys Chem B. 2006 Sep 21;110(37):18651-60. doi: 10.1021/jp062890w.

Abstract

We report a joint theoretical-experimental study on the optical properties of 5-N-succinimidyl-2,2'-bithiophene (NS-2T), a prototype system for a new class of biomarkers. Time-dependent density functional theory (TD-DFT) and approximate coupled-cluster single and doubles (CC2) calculations are performed in the ground and excited states. Theoretical results are compared with absorption, photoluminescence (PL), time-resolved PL, and PL quantum efficiency measurements. The excited state of NS-2T has a larger dipole moment as compared to that of the ground state, explaining the experimental shift of the PL peak in solvents of different polarity, and a smaller intersystem crossing (ISC) rate as compared to that of isolated bithiophene (2T), explaining the increased PL quantum efficiency. We also studied two model systems to describe the effects of the covalent binding of NS-2T to biomolecules and proteins with the epsilon-NH(2) lysine groups. These model systems show optical properties closer to 2T, as the PL quantum efficiency is reduced due to the increased ISC rate. Theoretical calculations and experimental results show that covalent binding of NS-2T to a biomolecule will blue-shift the absorption but not the photoluminescence. CC2 and TD-DFT can very well describe the absorption and photoluminescence energies of all three systems, but the presence of several charge-transfer transitions in the TD-DFT spectrum of NS-2T required the use of a correlated method to validate the TD-DFT results.

摘要

我们报道了一项关于新型生物标志物原型系统5-N-琥珀酰亚胺基-2,2'-联噻吩(NS-2T)光学性质的理论与实验联合研究。在基态和激发态进行了含时密度泛函理论(TD-DFT)和近似耦合簇单双激发(CC2)计算。将理论结果与吸收光谱、光致发光(PL)、时间分辨PL以及PL量子效率测量结果进行了比较。与基态相比,NS-2T的激发态具有更大的偶极矩,这解释了在不同极性溶剂中PL峰的实验性位移;与孤立的联噻吩(2T)相比,其系间窜越(ISC)速率更小,这解释了PL量子效率的提高。我们还研究了两个模型系统,以描述NS-2T与具有ε-NH(2)赖氨酸基团的生物分子和蛋白质共价结合的影响。这些模型系统显示出更接近2T的光学性质,因为ISC速率增加导致PL量子效率降低。理论计算和实验结果表明,NS-2T与生物分子的共价结合将使吸收光谱发生蓝移,但不会使光致发光发生蓝移。CC2和TD-DFT能够很好地描述所有三个系统的吸收和光致发光能量,但NS-2T的TD-DFT光谱中存在多个电荷转移跃迁,这需要使用一种相关方法来验证TD-DFT结果。

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