首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Spectral properties of ionic benzotristhiazole based donor-acceptor NLO-phores in polymer matrices and their one- and two-photon cellular imaging ability
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Spectral properties of ionic benzotristhiazole based donor-acceptor NLO-phores in polymer matrices and their one- and two-photon cellular imaging ability

机译:基于离子苯并三唑基唑 - 受体NLO-Phore在聚合物基质中的光谱特性及其单和双光子蜂窝成像能力

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摘要

A series of ionic benzotristhiazolium (BTT) push-pull chromophores, with different nitrogen donor groups and different lengths of conjugated bridges, was successfully doped in polar polymer matrices (PVC and PSS). The spectral (photophysical) properties of their low concentration thin polymeric films are compared with those in solution and are discussed in terms of matrix polarity/viscosity influence, specific polymer-chromophore interaction, structure-spectral property relationship and Twisted Intramolecular Charge-Transfer (TICT) state formation. The elimination of a non-emissive phantom and TICT state formation by restricted intramolecular rotations in the polymer matrix or viscous solvent results in a relatively high Phi(F) of all the investigated NLO-phores; particularly for near-infrared NIR molecular rotors bearing diphenylamino and julolidine donor groups. Because of cationic characteristics, small molecular weight, calculated high second hyperpolarizability and significant emission efficiency dependence on surroundings' viscosity (rigidochromic effect), two dyes were chosen as candidates for potential fluorescent probes for one-photon (1P) and two photon (2P) cellular imaging. The selected BTT NLO-phore with a julolidine donor is promising as a mitochondria-specific fluorescent small molecular probe for live cell super-resolution imaging with low cytotoxicity and good photostability, and is also potentially suitable for super-resolution STED imaging.
机译:一系列离子苯并二唑(BTT)推拉发色团,具有不同的氮供体组和不同长度的共轭桥,在极性聚合物基质(PVC和PSS)中成功掺杂。将它们低浓度薄的聚合物膜的光谱(光学药物)与溶液中的光谱(光学物理)性能与基质极性/粘度影响,特异性聚合物 - 发色团相互作用,结构光谱性质关系和扭曲的分子内电荷转移(图)国家形成。通过限制聚合物基质或粘性溶剂中的限制性分子内旋转来消除非发光体模和TICT状态形成,导致所有研究的NLO-PHORE的相对高的PHI(F);特别是对于携带二苯基氨基和朱啉氨酸供体基团的近红外Nir分子转子。由于阳离子特性,小分子量,计算出高第二的高分子化和显着的排放效率依赖于周围环境的粘度(刚性效果),选择两种染料作为单光子(1p)和两个光子(2p)的潜在荧光探针的候选者细胞成像。具有巨龙素供体的选定的BTT NLO-PHORE是具有低细胞毒性和良好光稳定性的活细胞超分辨率成像的线粒体特异性荧光小分子探针,并且也可能适用于超分辨率的定型成像。

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