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Temperature-responsive Behavior of Polymer Fluorescent System via Electrostatic Interaction Mediated Aggregation/Deaggregation

Temperature-responsive Behavior of Polymer Fluorescent System via Electrostatic Interaction Mediated Aggregation/Deaggregation
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摘要 A simple and effective polymer fluorescent thermosensitive system was successfully developed based on the synergistic effect of excimer/monomer interconversion of pyrene derivatives and electrostatic interaction between polyelectrolyte and charged fluorophore. As for the system, the excimer-monomer conversion, thermosensitive behavior and thermo-responsive reversibility were investigated experimentally. Temperature variation and temperature-distribution induced fluorescence changes can be observed directly by naked eyes. Thus, this polymer system holds promise for serving as a fluorescent thermometer. A simple and effective polymer fluorescent thermosensitive system was successfully developed based on the synergistic effect of excimer/monomer interconversion of pyrene derivatives and electrostatic interaction between polyelectrolyte and charged fluorophore. As for the system, the excimer-monomer conversion, thermosensitive behavior and thermo-responsive reversibility were investigated experimentally. Temperature variation and temperature-distribution induced fluorescence changes can be observed directly by naked eyes. Thus, this polymer system holds promise for serving as a fluorescent thermometer.
出处 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2016年第7期830-837,共8页 高分子科学(英文版)
基金 financially supported by the Science and Technology Planning Project of Guangdong Province(No.2014A010105009) the National Key Basic Research Program of China(No.2013CB834702) the National Natural Science Foundation of China(Nos.21574044 and 21474031) the Fundamental Research Funds for the Central Universities(No.2015ZY013)
关键词 Polymer fluorescent thermometer TEMPERATURE-RESPONSIVE Electrostatic interaction AGGREGATION DEAGGREGATION Polymer fluorescent thermometer Temperature-responsive Electrostatic interaction Aggregation Deaggregation
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  • 1Yang, Z.G., Cao, J.F., He, Y.X., Yang, J.H., Kim, T., Peng, X.J. and Kim, J.S., Chem. Soc. Rev,, 2014, 43:4563.
  • 2Wang, Z.Y., Ma, X.Q., Zong, S.F., Wang, Y.Z., Chen, H. and Cui, Y.P., Talanta, 2015, 13 ! :259.
  • 3Pals, V.F., Lassaletta, J.M., Fernandez, R., E1-Sheshtawy, H.S., Ros, A. and Pischel, U., Chem. Eur. J., 2014, 20:7638.
  • 4Feng, J., Xiong, L., Wang, S.Q., Li, S.Y., Li, Y. and Yang, G.Q., Adv. Funct. Mater., 2013, 23:340.
  • 5Ozawa, A., Shimizu, A., Nishiyabu, R. and Kubo, Y., Chem. Commun., 2015, 51:118.
  • 6Baker, G.A., Baker, S.N. and McCleskey, T.M., Chem. Commun., 2003, 23:2932.
  • 7Hang, Y.D., He, X.P., Yang, L. and Hua, J.L., Biosens. Bioelectron., 2015, 65:420.
  • 8Ji, X.F., Wang, P., Wang, H. and Huang, F.H., Chinese J. Polym. Sci., 2015, 33(6): 890.
  • 9Zhang, X.Q., Zhang, X.Y., Yang, B. and Wei, Y., Chinese J. Polym. Sci., 2014, 32(11): 1479.
  • 10Huang, Y.F., Ou, D.X., Wang, C., Huang, C., Li, Q.Q. and Li, Z., Polym. Chem., 2014, 5:2041.

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