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溶质诱导的异常水荧光

Anomalous Water Fluorescence Induced by Solutes.

作者信息

Villa Anna Maria, Di Paola Jessica, Ami Diletta, De Gioia Luca, Natalello Antonino, Bertini Luca

机构信息

Department of Biotechnologies and Biosciences, University of Milano-Bicocca, Piazza della Scienza 2, 20126 Milan, Italy.

出版信息

J Phys Chem Lett. 2025 Jul 10;16(27):6935-6945. doi: 10.1021/acs.jpclett.5c01189. Epub 2025 Jun 30.

Abstract

The origin of recently reported anomalous fluorescence emissions from aqueous solutions of nonaromatic solutes remains elusive. To determine whether the solute nature influences the fluorescence characteristics and to identify a potential common mechanism, we measured the fluorescence spectra of 21 different solutions. We observed similar emission characteristics across all samples, suggesting that the solute nature plays a minimal role in the emission mechanism. Using time-dependent density functional theory on large water, NaCl/water, and glycerol/water clusters, we attributed the anomalous emission to the decay of charge-transfer-to-solvent excitations (CTTS) which populate a diradical zwitterionic excited state localized at hydrogen-bond network defects. The Arrhenius-like plots for NaCl and glycerol solutions revealed that the S nonradiative decay pathway involves the diradical recombination via librational motion. We propose that the presence of solute molecules slows this process, thus increasing the lifetime of the CTTS excited states and facilitating emission.

摘要

最近报道的非芳香族溶质水溶液异常荧光发射的起源仍然难以捉摸。为了确定溶质性质是否会影响荧光特性并确定潜在的共同机制,我们测量了21种不同溶液的荧光光谱。我们在所有样品中观察到了相似的发射特性,这表明溶质性质在发射机制中所起的作用极小。通过对大型水团簇、NaCl/水团簇和甘油/水团簇运用含时密度泛函理论,我们将这种异常发射归因于电荷转移至溶剂激发态(CTTS)的衰减,CTTS激发态会填充一种定域于氢键网络缺陷处的双自由基两性离子激发态。NaCl溶液和甘油溶液的类阿伦尼乌斯图表明,S非辐射衰变途径涉及通过振动运动的双自由基复合。我们提出,溶质分子的存在减缓了这一过程,从而增加了CTTS激发态的寿命并促进了发射。

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