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用于检测苯硫酚的荧光探针“开-关”机制的理论研究:光致电子转移和分子内电荷转移

Theoretical Investigation on the "ON-OFF" Mechanism of a Fluorescent Probe for Thiophenols: Photoinduced Electron Transfer and Intramolecular Charge Transfer.

作者信息

Wang Yuxi, Zhang Meng, Li Wenzhi, Wang Yi, Zhou Panwang

机构信息

School of Biological Engineering, Dalian Polytechnic University, Dalian 116034, China.

Institute of Molecular Sciences and Engineering, Institute of Frontier and Interdisciplinary Science, Shandong University, Qingdao 266237, China.

出版信息

Molecules. 2023 Oct 3;28(19):6921. doi: 10.3390/molecules28196921.

Abstract

In this study, the sensing mechanism of (2E,4E)-5-(4-(dimethylamino)phenyl)-1-(2-(2,4dinitrophenoxy)phenyl)penta-2,4-dien-1-one (DAPH-DNP) towards thiophenols was investigated by density functional theory (DFT) and time-dependent DFT (TD-DFT). The DNP group plays an important role in charge transfer excitation. Due to the typical donor-excited photo-induced electron transfer (d-PET) process, DAPH-DNP has fluorescence quenching behavior. After the thiolysis reaction between DAPH-DNP and thiophenol, the hydroxyl group is released, and DAPH is generated with the reaction showing strong fluorescence. The fluorescence enhancement of DAPH is not caused by an excited-state intramolecular proton transfer (ESIPT) process. The potential energy curves (PECs) show that DAPH-keto is less stable than DAPH-enol. The frontier molecular orbitals (FMOs) of DAPH show that the excitation process is accompanied by intramolecular charger transfer (ICT), and the corresponding character of DAPH was further confirmed by hole-electron and interfragment charge transfer (IFCT) analysis methods. Above all, the sensing mechanism of the turn-on type probe DAPH-DNP towards thiophenol is based on the PET mechanism.

摘要

在本研究中,通过密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)研究了(2E,4E)-5-(4-(二甲基氨基)苯基)-1-(2-(2,4-二硝基苯氧基)苯基)戊-2,4-二烯-1-酮(DAPH-DNP)对硫酚的传感机制。DNP基团在电荷转移激发中起重要作用。由于典型的供体激发光诱导电子转移(d-PET)过程,DAPH-DNP具有荧光猝灭行为。DAPH-DNP与硫酚发生硫解反应后,释放出羟基,生成DAPH,该反应表现出强荧光。DAPH的荧光增强不是由激发态分子内质子转移(ESIPT)过程引起的。势能曲线(PECs)表明,DAPH-酮式比DAPH-烯醇式稳定性差。DAPH的前线分子轨道(FMOs)表明,激发过程伴随着分子内电荷转移(ICT),并通过空穴-电子和片段间电荷转移(IFCT)分析方法进一步证实了DAPH的相应特性。综上所述,开启型探针DAPH-DNP对硫酚的传感机制基于PET机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/303f/10574459/22b9912db108/molecules-28-06921-sch001.jpg

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