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Biochemical synthesis of water soluble conducting polymers

机译:水溶性导电聚合物的生物化学合成

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An efficient biomimetic route for the synthesis of conducting polymers/copolymers complexed with lignin sulfonate and sodium (polystyrenesulfonate) (SPS) will be presented. This polyelectrolyte assisted PEG-hematin or horseradish peroxidase catalyzed polymerization of pyrrole (PYR), 3,4 ethyldioxithiophene (EDOT) and aniline has provided a route to synthesize water-soluble conducting polymers/copolymers under acidic conditions. The UV-vis, FTIR, conductivity and cyclic voltammetry studies for the polymers/copolymer complex indicated the presence of a thermally stable and electroactive polymers. Moreover, the use of water-soluble templates, used as well as dopants, provided a unique combination of properties such as high electronic conductivity, and processability. These polymers/copolymers are nowadays tested/evaluated for antirust features on airplanes and helicopters. However, other electronic applications, such as photovoltaics, for transparent conductive polyaniline, actuators, for polypyrrole, and antistatic films, for polyEDOT, will be proposed.
机译:将呈现用于合成与木质素磺酸盐和钠(聚苯乙烯磺酸钠)(SPS)络合的导电聚合物/共聚物合成的有效仿生途径。该聚电解质辅助PEG-血清或辣根过氧化物酶的吡咯(Pyr),3,4乙基二氧噻吩(Edot)和苯胺的催化聚合提供了一种在酸性条件下合成水溶性导电聚合物/共聚物的途径。聚合物/共聚物复合物的UV-VI,FTIR,电导率和循环伏安法研究表明存在热稳定和电活性聚合物。此外,使用和掺杂剂使用的水溶性模板的使用提供了诸如高电子导电性和加工性的独特性能组合。如今,这些聚合物/共聚物在飞机和直升机上测试/评估了防锈特征。然而,将提出其他电子应用,例如光伏,用于透明导电聚苯胺,致动器,用于聚蛋白,用于聚斑点的致动器,用于聚斑点。

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