Synthesis of amphiphilic spiropyran-based random copolymer by atom transfer radical polymerization for Co2+ recognition
Spiropyran
Merocyanine
Comonomer
Solvatochromism
Atom-transfer radical-polymerization
DOI:
10.1016/j.dyepig.2014.12.008
Publication Date:
2014-12-20T03:13:04Z
AUTHORS (4)
ABSTRACT
Abstract An amphiphilic spiropyran-based random copolymer containing methacrylic acid unit has been prepared and investigated with obvious negative solvatochromism in five different solvents. It was found that the polarity of comonomer influenced the photochromic behavior of spiropyran. The synthesized copolymer exhibited a good reversible behavior in aqueous solution: the addition of strong acid promoted the isomerization from spiropyran (SP) to merocyanine (MC), and the inverse process was achieved by the introduction of strong base. Much more importance, the effect of comonomer was utilized for the selective Co 2+ recognition. The locations of the maximum absorption peak stay almost as same as MC when it is complexed with Cu 2+ , Mn 2+ and Hg 2+ . The location, however, moves from 551 nm to 526 nm upon complexation with Co 2+ . The obvious color change of the solution from purple to claret-red after complexation with Co 2+ was observed. This interesting phenomenon is practically convenient for the visual recognition of Co 2+ .
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