• 复合修饰玻电极葡萄糖具有良好电催化氧化还原性能

    Glassy carbon electrode modified with the composite membrane showed good performance of electro-catalytic oxidation-reduction for glucose.

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  • 报道去甲肾上腺素双层类脂修饰电极的电化学行为

    The present work reports the electrochemical behavior of noradrenaline at a bilayer lipid membrane modified glassy carbon electrode.

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  • 氨基酸修饰玻碳电极表面荷电性质随着溶液环境改变而发生变化。

    The surface charge character of three kinds of amino modified electrodes will vary with the change of environment.

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  • 采用循环伏安差示脉冲伏安法,研究姜黄素DNA修饰电极DNA的相互作用。

    The interaction between curcumin and DNA were investigated by means of cyclic voltammetry and differential pulse voltammetry with DNA-modified glassy carbon electrodes.

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  • 基于普鲁士修饰玻碳电极结合二氧化硅溶胶凝胶固定化酶技术构造具有三明治”式结构的酶电极

    A highly sensitive glucose biosensor was prepared based on the Prussian Blue modified electrode combined with SiO 2 Sol-Gel immobilization method in a "sandwich configuration".

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  • 氨基酸修饰玻碳电极表面中性溶液均呈现荷负电性,对于带负电荷的活性探针离子均具有静电排斥作用。

    In neutral condition, three kinds of amino monolayer show electronegative, which has an electrostatic repulsion to the negative REDOX probe.

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  • 共价键合法把聚糖修饰电极表面,研究了NO_2 ~ -在修饰电极阳极出伏安特性

    The glassy carbon electrode was modified with chitosan by using the method of covalent-band reaction, and the anodic stripping voltammetric behavior of NO_2 ~ -at this modified electrode was examined.

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  • 玻碳电极相比,焦性没子酸MWNT修饰电极氧化电流显著增加

    The oxidation peak current for pyrogallol at the MWNT-modified GCE increased significantly compared with that at the bare GCE.

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  • 本文提出电极为基体制作聚乙烯醇PVA修饰电极

    The polyvinyl alcohol (PVA) modified electrode has been prepared on the basis of glassy carbon electrode.

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  • 电极(GCE)上制备对氨基吡啶(POAP)修饰电极,并研究多巴酚丁胺(DBTM)在POAP电极电化学行为

    A poly (4-aminopyridine) (POAP) modified electrode was prepared at GCE. The electrochemical behavior of dobutamine (DBTM) at this modified electrode was studied.

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  • 电极(GCE)上制备对氨基吡啶(POAP)修饰电极,并研究多巴酚丁胺(DBTM)在POAP电极电化学行为

    A poly (4-aminopyridine) (POAP) modified electrode was prepared at GCE. The electrochemical behavior of dobutamine (DBTM) at this modified electrode was studied.

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