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将硼二吡咯分子转子的粘度敏感范围提高两个数量级。

Enhancing the Viscosity-Sensitive Range of a BODIPY Molecular Rotor by Two Orders of Magnitude.

作者信息

Toliautas Stepas, Dodonova Jelena, Žvirblis Audrius, Čiplys Ignas, Polita Artūras, Devižis Andrius, Tumkevičius Sigitas, Šulskus Juozas, Vyšniauskas Aurimas

机构信息

Institute of Chemical Physics, Faculty of Physics, Vilnius University, Saulėtekio av. 9-III, 10222, Vilnius, Lithuania.

Institute of Chemistry, Faculty of Chemistry and Geosciences, Vilnius University, Naugarduko str. 24, 03225, Vilnius, Lithuania.

出版信息

Chemistry. 2019 Aug 6;25(44):10342-10349. doi: 10.1002/chem.201901315. Epub 2019 Jun 27.

Abstract

Molecular rotors are a class of fluorophores that enable convenient imaging of viscosity inside microscopic samples such as lipid vesicles or live cells. Currently, rotor compounds containing a boron-dipyrromethene (BODIPY) group are among the most promising viscosity probes. In this work, it is reported that by adding heavy-electron-withdrawing -NO groups, the viscosity-sensitive range of a BODIPY probe is drastically expanded from 5-1500 cP to 0.5-50 000 cP. The improved range makes it, to our knowledge, the first hydrophobic molecular rotor applicable not only at moderate viscosities but also for viscosity measurements in highly viscous samples. Furthermore, the photophysical mechanism of the BODIPY molecular rotors under study has been determined by performing quantum chemical calculations and transient absorption experiments. This mechanism demonstrates how BODIPY molecular rotors work in general, why the -NO group causes such an improvement, and why BODIPY molecular rotors suffer from undesirable sensitivity to temperature. Overall, besides reporting a viscosity probe with remarkable properties, the results obtained expand the general understanding of molecular rotors and show a way to use the knowledge of their molecular action mechanism for augmenting their viscosity-sensing properties.

摘要

分子转子是一类荧光团,能够方便地对脂质囊泡或活细胞等微观样品内部的粘度进行成像。目前,含有硼二吡咯亚甲基(BODIPY)基团的转子化合物是最有前途的粘度探针之一。在这项工作中,据报道,通过添加吸电子能力强的 -NO 基团,BODIPY 探针的粘度敏感范围从 5 - 1500 cP 大幅扩展到 0.5 - 50000 cP。据我们所知,改进后的范围使其成为首个不仅适用于中等粘度,还可用于高粘性样品粘度测量的疏水性分子转子。此外,通过进行量子化学计算和瞬态吸收实验,确定了所研究的 BODIPY 分子转子的光物理机制。该机制展示了 BODIPY 分子转子的一般工作方式、-NO 基团产生这种改进的原因以及 BODIPY 分子转子对温度具有不良敏感性的原因。总体而言,除了报道一种具有卓越性能的粘度探针外,所获得的结果扩展了对分子转子的一般理解,并展示了一种利用其分子作用机制知识来增强其粘度传感特性的方法。

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