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Fluorescent molecular thermometers based on polymers showing temperature-induced phase transitions and labeled with polarity-responsive benzofurazans

机译:基于聚合物的荧光分子温度计,显示温度诱导的相变并标记有极性响应性苯并呋喃

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Poly(N-isopropylacrylamide) in aqueous solution undergoes a phase transition at similar to32 degreesC. The fluorescence properties of benzofurazans are affected by solvent polarity. We combine these two characteristics for the first time to develop sensitive fluorescent molecular thermometers. Five fluorescent monomers having a benzofurazan skeleton were synthesized, and the copolymers of N-isopropylacrylamide (NIPAM) and a small quantity of the fluorescent monomer were obtained to investigate their fluorescence properties. With increase in temperature, the copolymers in water showed the temperature-induced phase transition at similar to32 degreesC and the fluorescence intensities of the copolymers concurrently increased. Especially, for the copolymer of 4-N-(2-acryloyloxyethyl)-N-methylamino-7-N,N-dimethylaminosulfonyl-2,1,3-b enzoxadia- zole and NIPAM, the fluorescence intensity at 37 degreesC was 13.3-fold that seen at 29 degreesC. The sensitive range of temperature of these fluorescent molecular thermometers is changed by the replacement of the NIPAM units by N-isopropylmethacrylamide or N-n-propylacrylamide units in the copolymers. The basis of these fluorescent molecular thermometers is the decrease in the microenvironmental polarities near the main chains of the copolymers with increasing temperature, as confirmed from the maximum emission wavelengths of the benzofurazan units in the copolymers. The responses from the copolymers to the change in temperature are reversible and exactly repeatable during at least 10 cycles of heating and cooling. [References: 59]
机译:水溶液中的聚(N-异丙基丙烯酰胺)在类似于32°C的温度下发生相变。苯并呋喃类的荧光性质受溶剂极性的影响。我们首次结合了这两个特征,以开发灵敏的荧光分子温度计。合成了五种具有苯并呋喃赞骨架的荧光单体,并获得了N-异丙基丙烯酰胺(NIPAM)和少量荧光单体的共聚物,以研究其荧光性能。随着温度的升高,共聚物在水中的温度诱导相变在类似于32摄氏度的情况下发生,并且荧光强度同时增加。特别是,对于4-N-(2-丙烯酰氧基乙基)-N-甲基氨基-7-N,N-二甲基氨基磺酰基-2,1,3-b恩唑并二唑与NIPAM的共聚物,在37℃下的荧光强度为13.3。折成29摄氏度的温度。通过用共聚物中的N-异丙基甲基丙烯酰胺或N-正丙基丙烯酰胺单元代替NIPAM单元,可以改变这些荧光分子温度计的敏感温度范围。这些荧光分子温度计的基础是随着温度的升高,共聚物主链附近的微环境极性降低,这已从共聚物中苯并呋喃山单元的最大发射波长得到了证实。在至少10个加热和冷却循环中,共聚物对温度变化的响应是可逆的,并且可以精确地重复。 [参考:59]

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