Citation: Ming-jian Su, Wen Wan, Xue Yong, Xin-wei Lu, Rui-yuan Liu, Jin-qing Qu. UREA-BASED POLYACETYLENES AS AN OPTICAL SENSOR FOR FLUORIDE IONS[J]. Chinese Journal of Polymer Science, ;2013, 31(4): 620-629. doi: 10.1007/s10118-013-1245-4 shu

UREA-BASED POLYACETYLENES AS AN OPTICAL SENSOR FOR FLUORIDE IONS

  • Received Date: 1 June 2012
    Revised Date: 18 September 2012

    Fund Project: The work was financially supported by the National Natural Science Foundation of China (Nos. 21074073 and 51173050) and The Guangdong Provincial Engineering Research Center of Green Fine Chemical Technology, China.

  • Novel acetylenes carrying urea groups, 1-(4-ethynylphenyl)-3-(4-nitrophenyl) urea (1), 1-(4-propargyl)-3-(4-nitrophenyl) urea (2), were synthesized and polymerized with rhodium catalyst. Polymers [poly(1) and poly(2)] with moderate molecular weights were obtained in good yields. The anion sensing ability of poly(1) and poly(2) was estimated using the tetra-n-butylammonium (TBA) salts of a series of anions in DMF. Upon the addition of F-, the color of the DMF solution of poly(1) and poly(2) immediately turned to a different color, while the color of solution changed slightly upon addition of Cl-, HSO4-, Br-, and NO3-, indicating the F- sensing ability of poly(1) and poly(2). The 1H-NMR titrations of poly(1) revealed that the colorimetric response of poly(1) was triggered by the urea/F- interaction through the hydrogen bonding and/or deprotonation process. The absorption spectra titration and Hill plot analysis were carried out to measure the F- binding ability, and the Hill coefficient in the poly(1)/F- complexation was found to be 5.8. This result clearly indicated that this binding mode between poly(1) and F- was based on a positive homotropic allosterism.
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