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双光子吸收染料对卟啉三重态的动态猝灭:迈向双光子增强型氧纳米传感器

Dynamic Quenching of Porphyrin Triplet States by Two-Photon Absorbing Dyes: Towards Two-Photon-Enhanced Oxygen Nanosensors.

作者信息

Finikova Olga S, Chen Ping, Ou Zhongping, Kadish Karl M, Vinogradov Sergei A

机构信息

Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia, PA 19104.

出版信息

J Photochem Photobiol A Chem. 2008;198(1):75-84. doi: 10.1016/j.jphotochem.2008.02.020.

Abstract

Two-photon-enhanced dendritic nanoprobes are being developed for two-photon (2P) laser scanning microscopy of oxygen [1]. In these molecular constructs, phosphorescence of metalloporphyrins is coupled to two-photon absorption (2PA) of electronically separate antenna dyes via intramolecular Förster-type resonance energy transfer (FRET). In the originally developed probes, competing electron transfer (ET) between the antennae and the long-lived triplet states of metalloporphyrins partially quenched the phosphorescence, reducing the probe's sensitivity and dynamic range. The rate of such ET can be reduced by tuning the redox potentials of the chromophores. In order to identify the optimal metalloporphyrin-2P antenna pairs, we performed screening of several phosphorescent Pt porphyrins (FRET acceptors) and 2P dyes (FRET donors) using dynamic quenching of phosphorescence. Phosphorescence lifetimes of Pt porphyrins were measured as a function of the dye concentration in organic solutions. The obtained Stern-Volmer quenching constants were correlated with the corresponding ET driving forces (DeltaG(ET)), calculated using the Rehm-Weller equation. FRET-pairs with minimal quenching rates were identified. The developed approach allows convenient screening of candidate-compounds for covalent assembly of 2P-enhanced triplet nanodevices. Systematic electrochemical measurements in a series of Pt porphyrins with varying peripheral substitution and conjugation pathways are presented.

摘要

双光子增强树枝状纳米探针正在被开发用于氧气的双光子(2P)激光扫描显微镜成像[1]。在这些分子结构中,金属卟啉的磷光通过分子内Förster型共振能量转移(FRET)与电子分离的天线染料的双光子吸收(2PA)相耦合。在最初开发的探针中,天线与金属卟啉的长寿命三重态之间的竞争性电子转移(ET)部分淬灭了磷光,降低了探针的灵敏度和动态范围。这种ET的速率可以通过调节发色团的氧化还原电位来降低。为了确定最佳的金属卟啉-2P天线对,我们利用磷光的动态淬灭对几种磷光铂卟啉(FRET受体)和2P染料(FRET供体)进行了筛选。测量了铂卟啉在有机溶液中的磷光寿命作为染料浓度的函数。获得的Stern-Volmer淬灭常数与使用Rehm-Weller方程计算的相应ET驱动力(ΔG(ET))相关。确定了淬灭速率最小的FRET对。所开发的方法允许方便地筛选用于共价组装2P增强三重态纳米器件的候选化合物。展示了在一系列具有不同外围取代和共轭途径的铂卟啉中的系统电化学测量。

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