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Effect of Additives on the in situ Laccase-Catalyzed Polymerization of Aniline Onto Bacterial Cellulose

机译:添加剂对原位漆酶催化苯胺在细菌纤维素上聚合的影响

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摘要

Laccase-mediated systems are a green route to accelerate the oxidation of aniline and obtain polyaniline with conductive properties. The synthesis of green polyaniline (emeraldine salt) was herein improved by the inclusion of additives like sodium bis (2–ethyl hexyl) sulfosuccinate (AOT) and potassium hexacyanoferrate (II) (KHCF) in the medium. The aniline polymerization was confirmed by the detection of the absorption band typical of emeraldine salt at 420 nm, typical of the semiquinoid radical cation, and of the polaron absorption band at 700–800 nm, corresponding to the distinctive signal of doped or partial doped aniline. The oligomers and/or polymers obtained were characterized by spectrometry techniques, namely 1H NMR and MALDI-TOF, and the bacterial cellulose (BC) conductivity was assessed by means of a four-point probe electrical conductivity technique. The best polymerization results were obtained with 5 mM AOT, 10 mM KHCF, and 25 U/mL of laccase. The synergistic effect between both additives in the presence of a catalyst leads to obtaining BC samples coated with green polyaniline with promising electric conductive properties.
机译:漆酶介导的系统是加速苯胺氧化并获得具有导电性能的聚苯胺的绿色途径。通过在培养基中加入双(2-乙基己基)磺基琥珀酸钠(AOT)和六氰合铁酸钾(II)(KHCF)等添加剂,可以改善绿色聚苯胺(翡翠盐)的合成。通过检测在420 nm处典型的翡翠盐典型吸收峰(典型的半喹啉基阳离子)和在700-800 nm处的极化子吸收谱带来确认苯胺聚合,这对应于掺杂或部分掺杂的苯胺的独特信号。 。通过光谱技术,即 1 NMR和MALDI-TOF对得到的低聚物和/或聚合物进行表征,并通过四点探针电导率技术评估细菌纤维素(BC)的电导率。 。用5 mM AOT,10 mM KHCF和25 U / mL漆酶可获得最佳的聚合结果。两种添加剂之间在催化剂存在下的协同作用导致获得涂覆有绿色聚苯胺且具有良好导电性能的BC样品。

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