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直接观察分子内氢键的断裂、质子运动的减慢以及在一种HBO衍生物中调节其机制。

Direct observation of breaking of the intramolecular H-bond, and slowing down of the proton motion and tuning its mechanism in an HBO derivative.

作者信息

Alarcos Noemí, Gutiérrez Mario, Liras Marta, Sánchez Félix, Moreno Miquel, Douhal Abderrazzak

机构信息

Departamento de Química Física, Facultad de Ciencias Ambientales y Bioquímica, and INAMOL, Universidad de Castilla-La Mancha, Avenida Carlos III, S.N., 45071 Toledo, Spain.

出版信息

Phys Chem Chem Phys. 2015 Jun 14;17(22):14569-81. doi: 10.1039/c5cp01437a.

Abstract

We report on spectroscopic and photodynamical behaviours of 5-amino-2-(2'-hydroxyphenyl)benzoxazole (5A-HBO) in different solutions. The dye undergoes an ultrafast ICT reaction (<50 fs) (comparable to that observed for its methylated derivative, 5A-MBO), in agreement with the results of TD-DFT theoretical calculations (gas phase). Depending on the used solvent, the ICT reaction can be followed by a reversible/irreversible excited-state intramolecular proton transfer (ESIPT) reaction or by breaking of the intramolecular hydrogen bond (IHB). 5A-HBO in n-heptane solution exhibits an irreversible and slow (20 ps) ESIPT reaction, while that of the parent compound, HBO, takes place in less than 150 fs. Compared to excited HBO behaviour, theoretical calculations on 5A-HBO suggest a higher energy barrier (∼4 kcal mol(-1)) between the relaxed enol and keto tautomers, in addition to a less stabilization of the latter, which is in agreement with experiments in n-heptane. On the other hand, in dichloromethane, after the ICT reaction a subsequent and reversible proton motion occurs in an extraordinary slower regime (ns-time scale). No isotopic effect (OH/OD exchange) was observed in this solvent reflecting that the reversible ESIPT reaction evolves along the IHB and solvent coordinates. Using tetrahydrofurane and acetonitrile, we observed a breaking of the IHB due to specific intermolecular interactions with solvent molecules. This leads to the formation of open-enol forms, which undergo an ICT reaction as it occurs in 5A-MBO. These results bring new findings in the coupled ICT and ESIPT reactions. The photobehaviour of this new dye remarkably changes with the solvent nature, opening up the window for further research and possible applications in sensing polarity or H-bonding of media similar to that of the biological ones.

摘要

我们报道了5-氨基-2-(2'-羟基苯基)苯并恶唑(5A-HBO)在不同溶液中的光谱和光动力学行为。该染料发生超快的分子内电荷转移(ICT)反应(<50 fs)(与其甲基化衍生物5A-MBO所观察到的反应相当),这与含时密度泛函理论(TD-DFT)的理论计算结果(气相)一致。根据所使用的溶剂,ICT反应之后可能会发生可逆/不可逆的激发态分子内质子转移(ESIPT)反应,或者分子内氢键(IHB)断裂。5A-HBO在正庚烷溶液中表现出不可逆且缓慢(20 ps)的ESIPT反应,而母体化合物HBO的ESIPT反应在不到150 fs内发生。与激发态HBO的行为相比,对5A-HBO的理论计算表明,在松弛的烯醇式和酮式互变异构体之间存在更高的能垒(约4 kcal mol(-1)),此外酮式互变异构体的稳定性更低,这与在正庚烷中的实验结果一致。另一方面,在二氯甲烷中,ICT反应之后会在一个非常慢的时间尺度(纳秒级)上发生后续的可逆质子运动。在这种溶剂中未观察到同位素效应(OH/OD交换),这表明可逆的ESIPT反应是沿着IHB和溶剂坐标进行的。使用四氢呋喃和乙腈时,我们观察到由于与溶剂分子的特定分子间相互作用导致IHB断裂。这导致形成开放烯醇形式,其会像在5A-MBO中那样发生ICT反应。这些结果为耦合的ICT和ESIPT反应带来了新的发现。这种新染料的光行为会随着溶剂性质显著变化,为进一步研究以及在传感类似于生物介质的极性或氢键方面的可能应用打开了窗口。

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