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ELECTROSYNTHESIS AND CHARACTERIZATION OF POLY(HYDROXY-METHYLATED-3,4-ETHYLENEDIOXYTHIOPHENE) FILM IN AQUEOUS MICELLAR SOLUTION AND ITS BIOSENSING APPLICATION

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【作者】 段学民徐景坤

【Author】 Yao Lu~(a,b),Yang-ping Wen~b,Bao-yang Lu~a,Xue-min Duan~(a**),Jing-kun Xu~(b**), Long Zhang~(a,b) and Yao Huang~b a School of Pharmacy,Jiangxi Science & Technology Normal University,Nanchang 330013,China b Jiangxi Key Laboratory of Organic Chemistry,Jiangxi Science & Technology Normal University, Nanchang 330013,China

【机构】 School of Pharmacy,Jiangxi Science & Technology Normal UniversityJiangxi Key Laboratory of Organic Chemistry,Jiangxi Science & Technology Normal University

【摘要】 <正>A new and efficient synthetic route to hydroxymethylated-3,4-ethylenedioxylthiophene(EDOT-MeOH) was developed by a simple four-step sequence,and its global yield was approximately 41.06%.The poly(hydroxymethylated-3, 4-ethylenedioxylthiophene)(PEDOT-MeOH) film was electrosynthesized in aqueous sodium dodecylsulfate micellar solutions and characterized by different methods.The EDOT-MeOH possessed better water solubility,and lower onset oxidation potential than EDOT.The as-obtained PEDOT-MeOH film displayed good reversible redox activity,stability and capacitance properties in a monomer-free electrolyte,especially the good solubility of PEDOT-MeOH film in strong polar organic solvents such as dimethyl sulfoxide and tetrahydrofuran created a potential application in many different fields. Fluorescent spectra indicated that PEDOT-MeOH was a yellow-green-light-emitter with maximum emission at 568 nm.The as-formed PEDOT-MeOH film had good biocompatibility and was used for fabricating the electrochemical vitamin C biosensor.The proposed biosensor showed a linear range of 3×10-6 mol/L to 1.2×10-2 mol/L with the detection limit of 1μmol/L,a sensitivity of 95.6μA(mmol/L)-1 cm-2,and a current response time less than 10 s and a fairly good stability (The relative standard deviation was 0.43%for 20 successive assays,the proposed biosensor still retained 93.5%of bioactivity after 15 days storage.This result indicated that the prepared PEDOT-MeOH film as immobilization matrix of biologically-active species could be a promising candidate for the design and application of biosensor.

【Abstract】 A new and efficient synthetic route to hydroxymethylated-3,4-ethylenedioxylthiophene(EDOT-MeOH) was developed by a simple four-step sequence,and its global yield was approximately 41.06%.The poly(hydroxymethylated-3, 4-ethylenedioxylthiophene)(PEDOT-MeOH) film was electrosynthesized in aqueous sodium dodecylsulfate micellar solutions and characterized by different methods.The EDOT-MeOH possessed better water solubility,and lower onset oxidation potential than EDOT.The as-obtained PEDOT-MeOH film displayed good reversible redox activity,stability and capacitance properties in a monomer-free electrolyte,especially the good solubility of PEDOT-MeOH film in strong polar organic solvents such as dimethyl sulfoxide and tetrahydrofuran created a potential application in many different fields. Fluorescent spectra indicated that PEDOT-MeOH was a yellow-green-light-emitter with maximum emission at 568 nm.The as-formed PEDOT-MeOH film had good biocompatibility and was used for fabricating the electrochemical vitamin C biosensor.The proposed biosensor showed a linear range of 3×10-6 mol/L to 1.2×10-2 mol/L with the detection limit of 1μmol/L,a sensitivity of 95.6μA(mmol/L)-1 cm-2,and a current response time less than 10 s and a fairly good stability (The relative standard deviation was 0.43%for 20 successive assays,the proposed biosensor still retained 93.5%of bioactivity after 15 days storage.This result indicated that the prepared PEDOT-MeOH film as immobilization matrix of biologically-active species could be a promising candidate for the design and application of biosensor.

【基金】 supported by the NSFC(Nos.50963002,51073074);Jiangxi Provincial Department of Education(GJJ10678,GJJ11590);Natural Science Foundation of Jiangxi Province(2010GZH0041,20114BAB203015);Jiangxi Science & Technology Normal University(KY2010ZY13)
  • 【文献出处】 Chinese Journal of Polymer Science ,高分子科学(英文版) , 编辑部邮箱 ,2012年06期
  • 【分类号】TB383.2
  • 【被引频次】12
  • 【下载频次】62
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