Zhang Yujin, Leng Jiancai, Hu Wei
School of Science, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.
Hefei National Laboratory for Physical Sciences at the Microscale, iChEM (Collaborative Innovation Center of Chemistry for Energy Materials), School of Chemistry and Materials Science, University of Science and Technology of China, Hefei 230026, China.
Sensors (Basel). 2018 Apr 25;18(5):1324. doi: 10.3390/s18051324.
In the present work, we systematically investigate the sensing abilities of two recently literature-reported two-photon fluorescent NO probes, i.e., the o-phenylenediamine derivative of Nile Red and the p-phenylenediamine derivative of coumarin. The recognition mechanisms of these probes are studied by using the molecular orbital classifying method, which demonstrates the photoinduced electron transfer process. In addition, we have designed two new probes by swapping receptor units present on fluorophores, i.e., the p-phenylenediamine derivative of Nile Red and the o-phenylenediamine derivative of coumarin. However, it illustrates that only the latter has ability to function as off-on typed fluorescent probe for NO. More importantly, calculations on the two-photon absorption properties of the probes demonstrate that both receptor derivatives of coumarin possess larger TPA cross-sections than Nile Red derivatives, which makes a better two photon fluorescent probe. Our theoretical investigations reveal that the underlying mechanism satisfactorily explain the experimental results, providing a theoretical basis on the structure-property relationships which is beneficial to developing new two-photon fluorescent probes for NO.
在本工作中,我们系统地研究了两种最近文献报道的双光子荧光NO探针,即尼罗红的邻苯二胺衍生物和香豆素的对苯二胺衍生物的传感能力。利用分子轨道分类方法研究了这些探针的识别机制,该方法证明了光诱导电子转移过程。此外,我们通过交换荧光团上存在的受体单元设计了两种新探针,即尼罗红的对苯二胺衍生物和香豆素的邻苯二胺衍生物。然而,结果表明只有后者具有作为NO的开-关型荧光探针的功能。更重要的是,对探针双光子吸收特性的计算表明,香豆素的两种受体衍生物都比尼罗红衍生物具有更大的双光子吸收截面,这使其成为更好的双光子荧光探针。我们的理论研究表明,其潜在机制令人满意地解释了实验结果,为结构-性质关系提供了理论基础,这有利于开发新型的NO双光子荧光探针。