首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Carbon nanotube detectors for microchip CE: comparative study of single-wall and multiwall carbon nanotube, and graphite powder films on glassy carbon, gold, and platinum electrode surfaces.
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Carbon nanotube detectors for microchip CE: comparative study of single-wall and multiwall carbon nanotube, and graphite powder films on glassy carbon, gold, and platinum electrode surfaces.

机译:用于微芯片CE的碳纳米管检测器:单壁和多壁碳纳米管以及玻璃碳,金和铂电极表面上的石墨粉末膜的比较研究。

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摘要

The performance of microchip electrophoresis/electrochemistry system with carbon nanotube (CNT) film electrodes was studied. Electrocatalytic activities of different carbon materials (single-wall CNT (SWCNT), multiwall CNT (MWCNT), carbon powder) cast on different electrode substrates (glassy carbon (GC), gold, and platinum) were compared in a microfluidic setup and their performance as microchip electrochemical detectors was assessed. An MWCNT film on a GC electrode shows electrocatalytic effect toward oxidation of dopamine (E(1/2) shift of 0.09 V) and catechol (E(1/2) shift of 0.19 V) when compared to a bare GC electrode, while other CNT/carbon powder films on the GC electrode display negligible effects. Modification of a gold electrode by graphite powder results in a strong electrocatalytic effect toward oxidation of dopamine and catechol (E(1/2) shift of 0.14 and 0.11 V, respectively). A significant shift of the half-wave potentials to lower values also provide the MWCNT film (E(1/2) shift of 0.08 and 0.08 V for dopamine and catechol, respectively) and the SWCNT film (E(1/2) shift of 0.10 V for catechol) when compared to a bare gold electrode. A microfluidic device with a CNT film-modified detection electrode displays greatly improved separation resolution (R(s)) by a factor of two compared to a bare electrode, reflecting the electrocatalytic activity of CNT.
机译:研究了具有碳纳米管(CNT)膜电极的微芯片电泳/电化学系统的性能。在微流体装置中比较了在不同电极基材(玻璃碳(GC),金和铂)上浇铸的不同碳材料(单壁CNT(SWCNT),多壁CNT(MWCNT),碳粉)的电催化活性。评估了微芯片电化学检测器。与裸GC电极相比,GC电极上的MWCNT膜对多巴胺的氧化(E(1/2)位移为0.09 V)和邻苯二酚(E(1/2)位移为0.19 V)表现出电催化作用,而其他GC电极上的CNT /碳粉膜显示的影响可忽略不计。石墨粉对金电极的改性导致对多巴胺和邻苯二酚的氧化具有很强的电催化作用(E(1/2)位移分别为0.14和0.11 V)。半波电势向较低值的显着偏移还提供了MWCNT膜(对于多巴胺和邻苯二酚,E(1/2)的偏移分别为0.08和0.08 V)和SWCNT膜(E(1/2)的偏移为0.08 V)。与裸金电极相比,邻苯二酚为0.10 V)。与裸电极相比,具有CNT膜修饰的检测电极的微流装置显示的分离分辨率(R)大大提高了两倍,反映了CNT的电催化活性。

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