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A theoretical investigation of the two-photon absorption and fluorescent properties of coumarin-based derivatives for Pd2+ detection

机译:香豆素类衍生物对Pd 2 + 检测的双光子吸收和荧光性质的理论研究

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Palladium is emitted due to automobile catalytic converters, and with rapid growth in the number of cars, palladium is thus a current threat to human health and the environment. Two-photon (TP) fluorescent probes are favorable and powerful molecular tools for palladium ion (Pd2+) detection due to localized excitation and reduced phototoxicity and photodamage. In the present study, a series of “turn-on” TP fluorescent dyes based on coumarin derivatives were designed for Pd2+ recognition. Our study revealed the origin of the peculiarly different fluorescence behaviors of the synthesized Pd2+ probe R1 and the product P′1 quantitatively and qualitatively from a theoretical perspective. Moreover, quantum-chemical calculations on electronic structures, one/two-photon absorption and fluorescence optical properties have first been carried out for these TP fluorescent chromophores using an ab initio approach. The calculated results demonstrate that chemical modifications of the coumarin core by the introduction of an electron-withdrawing group (–Cl or –CN) to its 4-position effectively increase the TP absorption cross-section per molecular weight more easily than extending the π-conjugated structure at the 3-position. In the present work, the product P′4, with a much smaller internal conversion rate (KIC = 1.28 × 106 s?1) than that of the Pd2+ probe R4 (KIC = 9.09 × 1011 s?1), possesses the largest TP absorption cross-section per molecular weight (3.91) and the longest fluorescence wavelength (590.3 nm) among all the studied molecules, which means it has better potential for Pd2+ detection. Consequently, we hope that this detailed study can provide guidance for the design and synthesis of new Pd2+ fluorescent probes.
机译:钯由于汽车催化转化器而排放,并且随着汽车数量的快速增长,钯因此成为对人类健康和环境的当前威胁。双光子(TP)荧光探针由于局部激发,减少了光毒性和光损伤,是检测钯离子(Pd 2 + )的有利且强大的分子工具。在本研究中,设计了一系列基于香豆素衍生物的“开启” TP荧光染料用于Pd 2 + 识别。我们的研究从理论的角度定量和定性地揭示了合成的Pd 2 + 探针R1和产物P′1的独特荧光行为的起源。此外,首先使用 ab initio 方法对这些TP荧光发色团进行了电子结构,一/二光子吸收和荧光光学性质的量子化学计算。计算结果表明,通过在其4位引入吸电子基团(-Cl或-CN)对香豆素核心进行化学修饰,比扩展π-更容易提高每分子量的TP吸收截面。 3位的共轭结构。在目前的工作中,乘积P'4的内部转换率要小得多( K IC = 1.28×10 < sup> 6 s ?1 )比Pd 2 + 探针R4( K IC = 9.09×10 11 s < sup>?1 ),在所有研究的分子中,每分子量的TP吸收截面最大(3.91),荧光波长最长(590.3 nm),这意味着它具有更好的潜在Pd 2 + 检测。因此,我们希望这项详细的研究可以为新型Pd 2 + 荧光探针的设计和合成提供指导。

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