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1)  DNA-modified electrode
DNA修饰电极
2)  DNA-modified glassy carbon electrode
DNA修饰玻碳电极
1.
The interaction between curcumin and DNA were investigated by means of cyclic voltammetry and differential pulse voltammetry with DNA-modified glassy carbon electrodes.
采用循环伏安法和差示脉冲伏安法,研究了姜黄素在DNA修饰玻碳电极上与DNA的相互作用。
3)  DNA modified graphite powder microelectrode
DNA修饰石墨粉末微电极
1.
The electrochemical behaviors of daunomycin (DNM) at bare and DNA modified graphite powder microelectrodes have been comparatively studied, and a method for the determination of DNM was developed.
研究了道诺霉素 ( DNM)在石墨粉末微电极和 DNA修饰石墨粉末微电极上的电化学行为 ,并分析了产生差别的原因。
4)  Modified electrode
修饰电极
1.
The Electrocatalytic Properties of Au Core-Pt Shell Nanoparticle-Modified Electrode for Formaldehyde in Acidic Aqueous;
金核-铂壳纳米修饰电极在酸性溶液中对甲醛的电催化氧化
2.
Study on fabrication of PB/MWNTs modified electrode through sequential deposition method and its electrochemical performance;
顺序化学沉积法制备PB/MWNTs复合修饰电极及电化学性能研究
3.
Electrochemical Luminescence Behaviors of Ionic Polymer-Modified Electrodes;
离子型聚合物修饰电极的电化学发光特性
5)  modified electrodes
修饰电极
1.
The Electrocatalytic Actions of Poly (Crystal Violet) Film Modified Electrodes on Uric Acid and Dopamine;
聚结晶紫薄膜修饰电极对多巴胺与尿酸的电催化作用(英文)
2.
Study on the Electrochemical Properties of Modified Electrodes Based on Carbon Nanofibers;
纳米碳纤维修饰电极的电化学行为研究
3.
At present, the application of nano-materials as new chemically modified materials is a new trend in the field of chemically modified electrodes.
目前,运用纳米材料作为化学修饰电极的修饰材料是化学修饰电极新的发展方向。
6)  chemically modified electrode
修饰电极
1.
Electrochemical behaviors of europium ferrocene derivative coordination complex chemically modified electrodes were studied.
研究了影响铕 二茂铁衍生物配合物薄膜修饰电极伏安性质的各种因素 ,讨论了薄膜电极的电荷传递过程。
2.
n indium hexacyanoferrate(InHCF) film glassy carbon chemically modified electrode(CME)was usedto catalyze the electrooxidation of cysteine, reduced glutathione and N-acethl-L-cysteine in acidic solution,Stability of the CME prepared by different methods has been studied.
比较了不同制备方法所得修饰电极的稳定性。
3.
Using new materials,including hybrid composites,nanomaterials and biomolecular materials,in construction of chemically modified electrode in order to broaden the application range of analysis technology has already been active area of modern electroanalytical chemistry and biosensing study.
应用复合材料、纳米材料以及生物材料等新型材料制备修饰电极,以提高其分析性能和扩大分析应用范围,已经成为电分析化学以及生物传感工作中的研究热点。
补充资料:DNA修饰
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性质: 在专一酶的作用下,某个特定碱基加上侧基的DNA改变。最熟知的DNA修饰作用是甲基化作用。甲基化常用于保护基因组DNA不受细菌中限制性内切酶的破坏。真核生物转移RNA合成中,也有一些碱基发生甲基化,有证据表明,很少转录的序列通常含有丰富的甲基化碱基,高等植物中胞嘧啶甲基化非常普遍,在控制DNA功能中有重要作用。

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