首页> 外文期刊>Lab on a chip >High NIR-purity index single-walled carbon nanotubes for electrochemical sensing in microfluidic chips
【24h】

High NIR-purity index single-walled carbon nanotubes for electrochemical sensing in microfluidic chips

机译:高NIR纯度指数单壁碳纳米管,用于微流控芯片中的电化学传感

获取原文
获取原文并翻译 | 示例
           

摘要

Single-walled carbon nanotubes (SWCNTs) should constitute an important natural step towards the improvement of the analytical performance of microfluidic electrochemical sensing. SWCNTs inherently offer lower detection potentials, higher surfaces and better stability than the existing carbon electrodes. However, pristine SWCNTs contain some carbonaceous and metallic impurities that influence their electrochemical performance. Thus, an appropriate processing method is important for obtaining high purity SWCNTs for analytical applications. In this work, a set of 0.1 mg mL~(-1) SWCNT dispersions with different degrees of purity and different dispersants (SDBS; pluronic F68 and DMF) was carefully characterized by near infrared (NIR) spectroscopy giving a Purity Index (NIR-PI) ranging from 0.039 to 0.310. The highest purity was obtained when air oxidized SWCNTs were dispersed in SDBS, followed by centrifugation. The SWCNT dispersions were utilized to modify microfluidic chip electrodes for the electrochemical sensing of dopamine and catechol. In comparison with non-SWCNT-based electrodes, the sample with the highest NIR-PI (0.310) exhibited the best analytical performance in terms of improved sensitivity (3-folds higher), very good signal-to-noise ratio, high resistance-to-fouling in terms of relative standard deviation (RSD 7%; n = 15), and enhanced resolution (2-folds higher). In addition, very well-defined concentration dependence was also obtained with excellent correlation coefficients (r ≥ 0.990). Likewise, a good analytical sensitivity, suitable detection limits (LODs) and a very good precision with independence of the concentration assayed (RSDs ≤ 5%) was achieved. These valuable features indicate the suitability of this material for quantitative analysis. NIR-PI and further TEM and XRD characterization demonstrated that the analytical response was driven and controlled by the high NIR-PI of the SWCNTs used. The significance of this work is the demonstration for the first time of the sensitivity-purity relationship in SWCNT microfluidic chips. A novel and valuable analytical tool for electrochemical sensing has been developed: SWCNTs with high purity and a rich surface chemistry with functional groups, both essential for analytical purposes. Also, this work helps to better understand the analytical potency of SWCNTs coupled to microfluidic chips and it opens new gates for using these unique dispersions in real-world applications.
机译:单壁碳纳米管(SWCNTs)应该构成迈向改善微流电化学传感分析性能的重要自然步骤。与现有的碳电极相比,SWCNT本质上具有更低的检测电势,更高的表面和更好的稳定性。但是,原始的SWCNT包含一些碳质和金属杂质,这些杂质会影响其电化学性能。因此,合适的处理方法对于获得用于分析应用的高纯度SWCNT是重要的。在这项工作中,一组具有不同纯度和不同分散剂(SDBS;普朗尼克F68和DMF)的0.1 mg mL〜(-1)SWCNT分散体通过近红外(NIR)光谱仔细表征,得到纯度指数(NIR- PI)从0.039到0.310。将空气氧化的SWCNT分散在SDBS中,然后进行离心分离,可获得最高的纯度。 SWCNT分散体用于修饰微流控芯片电极,用于多巴胺和邻苯二酚的电化学传感。与基于非SWCNT的电极相比,具有最高NIR-PI(0.310)的样品在提高灵敏度(高3倍),非常好的信噪比,高电阻-以相对标准偏差(RSD 7%; n = 15)和增强的分辨率(高2倍)表示污垢。此外,还获得了很好的浓度依赖性,相关系数极佳(r≥0.990)。同样,获得了良好的分析灵敏度,合适的检测限(LOD)和非常好的精密度,且不受浓度的影响(RSD≤5%)。这些有价值的特征表明该材料适合定量分析。 NIR-PI以及进一步的TEM和XRD表征表明,所用SWCNT的高NIR-PI驱动和控制了分析响应。这项工作的意义是首次证明SWCNT微流控芯片中的灵敏度-纯度关系。已经开发出一种新颖且有价值的电化学传感分析工具:高纯度的SWCNT和具有官能团的丰富表面化学,这对于分析目的都是必不可少的。而且,这项工作有助于更好地了解与微流控芯片耦合的SWCNT的分析能力,并且为在实际应用中使用这些独特的分散剂打开了新的大门。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号