Ćirić-Marjanović Gordana, Milojević-Rakić Maja, Janošević-Ležaić Aleksandra, Luginbühl Sandra, Walde Peter
Faculty of Physical Chemistry, University of Belgrade, Studentski Trg 12-16, 11158 Belgrade, Serbia.
Department of Physical Chemistry and Instrumental Methods, Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, 11221 Belgrade, Serbia.
Chem Zvesti. 2017;71(2):199-242. doi: 10.1007/s11696-016-0094-3. Epub 2016 Dec 19.
The literature concerning the oxidative oligomerization and polymerization of various arylamines, e.g., aniline, substituted anilines, aminonaphthalene and its derivatives, catalyzed by oxidoreductases, such as laccases and peroxidases, in aqueous, organic, and mixed aqueous organic monophasic or biphasic media, is reviewed. An overview of template-free as well as template-assisted enzymatic syntheses of oligomers and polymers of arylamines is given. Special attention is paid to mechanistic aspects of these biocatalytic processes. Because of the nontoxicity of oxidoreductases and their high catalytic efficiency, as well as high selectivity of enzymatic oligomerizations/polymerizations under mild conditions-using mainly water as a solvent and often resulting in minimal byproduct formation-enzymatic oligomerizations and polymerizations of arylamines are environmentally friendly and significantly contribute to a "green" chemistry of conducting and redox-active oligomers and polymers. Current and potential future applications of enzymatic polymerization processes and enzymatically synthesized oligo/polyarylamines are discussed.
本文综述了在水性、有机以及混合的水-有机单相或双相介质中,漆酶和过氧化物酶等氧化还原酶催化各种芳胺(如苯胺、取代苯胺、氨基萘及其衍生物)发生氧化低聚和聚合反应的相关文献。文中给出了芳胺低聚物和聚合物的无模板及模板辅助酶促合成的概述。特别关注了这些生物催化过程的机理方面。由于氧化还原酶无毒、催化效率高,且在温和条件下酶促低聚/聚合反应具有高选择性(主要以水为溶剂,副产物形成通常极少),芳胺的酶促低聚和聚合反应对环境友好,并且对导电和氧化还原活性低聚物及聚合物的“绿色”化学有显著贡献。文中还讨论了酶促聚合过程以及酶促合成的低聚/聚芳胺的当前和潜在未来应用。