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首页> 外文期刊>Journal of Materials Science >Enhanced electrochemical detection performance of multiwall carbon nanotubes functionalized by aspartame
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Enhanced electrochemical detection performance of multiwall carbon nanotubes functionalized by aspartame

机译:阿斯巴甜功能化的多壁碳纳米管的电化学检测性能增强

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摘要

Inexpensive, non-toxic, and biocompatible materials that can disperse multiwall carbon nanotubes (MWCNTs) in aqueous solutions through a non-covalent approach while retaining their unique electronic and photonic properties are highly preferred. In this article, we introduce the use of an amphiphilic dipeptide derivative, aspartame, as an effective dispersing agent in preparing highly stable suspensions under ultrasonication. The results demonstrate that aspartame was absorbed by the nanotube surface possibly because of non-covalent π-π stacking between the aromatic group of aspartame and the CNT backbone. In addition, the resulting MWCNT/aspartame composites remained stably dispersed over a wide range of pH values. The chronoamperometric measurements of MWCNT/aspartame composite-coated electrodes for hydrogen peroxide demonstrated better electrochemical detection performance, as characterized by significantly enhanced step current, higher sensitivity, and reduced potential compared with bare electrodes.
机译:廉价,无毒且具有生物相容性的材料是高度优选的,它可以通过非共价方法将多壁碳纳米管(MWCNT)分散在水溶液中,同时保留其独特的电子和光子性能。在本文中,我们介绍了使用两亲性二肽衍生物阿斯巴甜作为有效分散剂在超声下制备高度稳定的悬浮液的方法。结果表明,阿斯巴甜被纳米管表面吸收,可能是由于阿斯巴甜的芳族基团与CNT主链之间存在非共价的π-π堆积。另外,所得的MWCNT /阿斯巴甜复合材料在很宽的pH值范围内保持稳定分散。 MWCNT /阿斯巴甜复合涂层电极对过氧化氢的计时安培测量显示出更好的电化学检测性能,与裸电极相比,其特征在于步进电流显着增强,灵敏度更高且电势降低。

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