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含二吡咯基喹喔啉共轭聚合物中阴离子诱导的比色响应和放大荧光猝灭的光物理研究。

Photophysical studies of anion-induced colorimetric response and amplified fluorescence quenching in dipyrrolylquinoxaline-containing conjugated polymers.

作者信息

Wu Cheng-Yang, Chen Min-Shen, Lin Chih-An, Lin Su-Ching, Sun Shih-Sheng

机构信息

Institute of Chemistry, Academia Sinica, 115, Nankang, Taipei, Taiwan, Republic of China.

出版信息

Chemistry. 2006 Mar 1;12(8):2263-9. doi: 10.1002/chem.200500804.

Abstract

The dipyrrolylquinoxaline (DPQ)-containing monomer and polymers were synthesized and employed as chromogenic and fluorescent chemosensors for inorganic anions. We have found that in the presence of fluoride or pyrophosphate, the receptors do not form hydrogen bonds between the pyrrole protons and anions. The colorimetric responses and fluorescence quenching in these chemosensors are indeed the result of deprotonation of the N-H proton. The anion selectivity is primarily determined by the relative basicity of anions. The sensitivity of DPQ-based chemosensor was found to display a 34-fold enhancement by incorporation into the conjugated polymer. The anion-induced deprotonation generates low-energy, non-fluorescent trapping sites and is responsible for the signal amplification where the quenching of the excited state occurs from the deprotonated DPQ site in the network by rapid exciton migration along the polymeric backbone.

摘要

合成了含二吡咯基喹喔啉(DPQ)的单体和聚合物,并将其用作无机阴离子的显色和荧光化学传感器。我们发现,在氟化物或焦磷酸盐存在下,受体不会在吡咯质子和阴离子之间形成氢键。这些化学传感器中的比色响应和荧光猝灭实际上是N-H质子去质子化的结果。阴离子选择性主要由阴离子的相对碱性决定。通过掺入共轭聚合物,发现基于DPQ的化学传感器的灵敏度提高了34倍。阴离子诱导的去质子化产生低能量、非荧光的俘获位点,并导致信号放大,其中激发态的猝灭是通过激子沿聚合物主链快速迁移,从网络中去质子化的DPQ位点发生的。

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