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Synthesis Photophysics Electrochemistry and Electrogenerated Chemiluminescence of PEG-Modified BODIPY dyes in Organic and Aqueous Solutions

机译:有机溶液中PEG改性BODIPY染料的合成光药电化学和电化学化学发光

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摘要

A set polyethylene glycol (PEG) appended BODIPY architectures (>BOPEG1 – BOPEG3) have been prepared and studied in CH2Cl2, H2O:CH3CN (1:1) and aqueous solutions. >BOPEG1 and >BOPEG2 both contain a short PEG chain and differ in substitution about the BODIPY framework. >BOPEG3 is comprised of a fully substituted BODIPY moiety linked to a PEG polymer that is roughly 13 units in length. The photophysics and electrochemical properties of these compounds have been thoroughly characterized in CH2Cl2 and aqueous CH3CN solutions. The behavior of >BOPEG1 – BOPEG3 correlates with established rules of BODIPY stability based on substitution about the BODIPY moiety. ECL for each of these compounds was also monitored. >BOPEG1, which is unsubstituted at the 2- and 6-positions dimerized upon electrochemical oxidation while >BOPEG2, which contains ethyl groups at the 2- and 6-positions, was much more robust and served as an excellent ECL luminophore. >BOPEG3 is highly soluble in water due to the long PEG tether and demonstrated modest ECL activity in aqueous solutions using tri-n-propylamine (TPrA) as a coreactant. As such, >BOPEG3 represents the first BODIPY derivative that has been shown to display ECL in water without the need for an organic cosolvent, and marks an important step in the development of BODIPY based ECL probes for various biosensing applications.
机译:已准备并在CH2Cl2,H2O:CH3CN(1:1)和水溶液中研究了一组附加了聚乙二醇(PEG)的BODIPY结构(> BOPEG1- BOPEG3 )。 > BOPEG1 和> BOPEG2 均包含一条短PEG链,并且在BODIPY框架的取代方面有所不同。 > BOPEG3 由与PEG聚合物连接的完全取代的BODIPY部分组成,该聚合物长约13个单位。这些化合物的光物理性质和电化学性质已在CH2Cl2和CH3CN水溶液中得到了彻底表征。 > BOPEG1 – BOPEG3 的行为与基于BODIPY部分取代的BODIPY稳定性的既定规则相关。还监控了每种化合物的ECL。 > BOPEG1 (在2和6位未取代)被电化学氧化二聚,而> BOPEG2 (在2和6位包含乙基)则要多得多坚固,可作为出色的ECL发光体。 > BOPEG3 由于具有长的PEG系链而在水中高度可溶,并且在使用三正丙胺(TPrA)作为共反应剂的水溶液中表现出适度的ECL活性。因此,> BOPEG3 代表了第一个BODIPY衍生物,该衍生物已显示出不需要有机助溶剂即可在水中显示ECL,并标志着基于BODIPY的ECL探针在各种生物传感应用领域的发展迈出了重要的一步。

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