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山东省高校化学传感分析重点实验室 济南大学化学化工学院,济南,250022
纸质出版日期:2013-4-20,
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王凯丽, 宋晓光, 公维田, 隋卫平, 李国宝. 巯基化改性壳聚糖在电化学生物传感器制备中的应用[J]. 高分子学报, 2013,(4):496-503.
Kai-li Wang, Xiao-guang Song, Wei-tian Gong, Wei-ping Sui, Guo-bao Li. THE APPLICATION OF THIOLATED CHITOSAN IN CONSTRUCTION OF ELECTROCHIMICAL BIOSENSOR[J]. Acta Polymerica Sinica, 2013,(4):496-503.
王凯丽, 宋晓光, 公维田, 隋卫平, 李国宝. 巯基化改性壳聚糖在电化学生物传感器制备中的应用[J]. 高分子学报, 2013,(4):496-503. DOI: 10.3724/SP.J.1105.2013.12244.
Kai-li Wang, Xiao-guang Song, Wei-tian Gong, Wei-ping Sui, Guo-bao Li. THE APPLICATION OF THIOLATED CHITOSAN IN CONSTRUCTION OF ELECTROCHIMICAL BIOSENSOR[J]. Acta Polymerica Sinica, 2013,(4):496-503. DOI: 10.3724/SP.J.1105.2013.12244.
以壳聚糖、N-乙酰-L-半胱氨酸(NAC)为原料
以1-羟基苯并三唑(HOBt)和1-乙基-3-(3-二甲基胺丙基)碳化二亚胺盐酸盐(EDAC)为缩合剂
合成功能化壳聚糖衍生物巯基壳聚糖(CHS-NAC).用红外光谱(FTIR)、核磁共振(1H-NMR)及X射线衍射(XRD)对其结构进行表征
用Ellmans试剂通过标准曲线法测得巯基含量.利用CHS-NAC的黏附性
通过层层吸附的方法将CHS-NAC、纳米金及细胞色素c分别修饰到玻碳电极(GC)上
通过扫描电子显微镜(SEM)对修饰电极表面的形貌进行了观察
采用循环伏安和电化学阻抗研究了不同修饰膜电极的电化学行为
及扫描速率对细胞色素c修饰电极的影响
并开展了对过氧化氢的电催化分析.实验结果表明
CHS-NAC能高效地将纳米金及细胞色素c固定在电极表面
并能有效发挥纳米金辅助转移电子及细胞色素c对过氧化氢催化的能力.
A functionalized chitosan derivative named sulfhydryl chitosan (CHS-NAC) was synthesised from chitosan (CHS) and N-acetyl-L-cysteine (NAC)
with 1-Hydroxybenzotriazole (HOBt) and 1-ethyl-3-(3-dimethylamino-propyl) carbodiimide hydrochloride (EDAC) as condensation agents.The structure of CHS-NAC was characterized by Fourier transform infrared spectroscopy (FTIR)
nuclear magnetic resonance (NMR) and X-ray diffraction (XRD).The content of thiol-group of CHS-NAC was measured to be 4.31110-4 mol/g through calibration curve taking use of Ellmans reagent.A layer of CHS-NAC film was modified onto the surface of glassy carbon electrodes by dispensing 8 L CHS-NAC solution.With the adhesive function of CHS-NAC modified film
gold nanoparticles and cytochrome c were modified onto the surface of glassy carbon electrode respectively.The electrochemical behaviors of these different modified electrodes were studied by cyclic voltammetry and electrochemical impedance spectra.The surface morphology of modified electrodes was characterized by scanning electron microscope (SEM).The influence of scan rate on the cytochrome c modified electrodes was also studied.Results showed that in low scan rate
electrochemical behavior was controlled by the surface process.The electrochemical catalytic analysis for hydrogen peroxide was carried out by using the cytochrome c modified electrode.Results showed that gold nanoparticles and cytochrome c can be fixed on the surface of glassy carbon electrode very well by CHS-NAC
and gold nanoparticles can effectively promote electron transfer of cytochrome c and the ability to electrochemically catalyze hydrogen peroxide.
巯基壳聚糖纳米金修饰电极循环伏安细胞色素c过氧化氢
Ulfhydryl chitosanGold-nanoparticleModified electrodeCyclic voltammetryCytochrome cHydrogen peroxide
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