首页> 外文期刊>Physical chemistry chemical physics: PCCP >A rapid conductometric sensor for the analysis of cyanide using imidazole based receptor
【24h】

A rapid conductometric sensor for the analysis of cyanide using imidazole based receptor

机译:使用咪唑基受体的用于分析氰化物的快速电导传感器

获取原文
获取原文并翻译 | 示例
           

摘要

A specific and efficient hydrogen bonding interaction between cyanide and the HN-H [imidazole] in an aqueous medium has been utilized for the selective recognition of cyanide under physiological conditions. The possibility of utilizing such an interaction for developing any practical device for the specific detection of cyanide in an aqueous environment has not been explored to date. We now report a simple dip and read conductometric sensor for cyanide ions using a tailored electrode in aqueous media. The purpose built reagent, 2-phenyl-1H-anthra-[2,3-d]-immidazole-5,10 dione was immobilized in a polyaniline matrix to fabricate this conductometric device. The homogeneous immobilization of the receptor in polyaniline was confirmed by FT-IR mapping. The proposed transduction mechanism is charge neutralization on the polyaniline moiety, which ultimately inhibits the protonation resulting in a decrease in the conductance of polyaniline. The sensor response was measured in three ranges of cyanide concentration (10(-10) M to 10(-8) M; 10(-8) M to 10(-6) M and 10(-6) M to 10(-3) M). Whereas the device is found insensitive in the first range, it acts as a detector in the second range and as a proportional sensor in the third range. The minimum detection limit of this device was found to be 10 nmol L-1 (2.6 ppt), which is significantly less than the WHO guideline values. The responses have been investigated under various conditions such as different pH and the electrochemical state of the polymer. The current device has been found to be better close to neutral pH and at a 400 mV vs. Ag/AgCl potential. The reproducibility and repeatability of the sensor was investigated and interference studies were performed.
机译:氰化物和HN-H [咪唑]在水性介质中的特定而有效的氢键相互作用已被用于在生理条件下选择性识别氰化物。迄今为止,尚未探索利用这种相互作用来开发用于在水性环境中特异性检测氰化物的任何实用装置的可能性。现在,我们报告在水性介质中使用量身定制的电极的氰化物离子的简单浸入式电导率传感器。将特制试剂2-苯基-1H-蒽-[2,3-d]-咪唑-5,10二酮固定在聚苯胺基质中以制造该电导装置。通过FT-IR作图证实了受体在聚苯胺中的均匀固定。提出的转导机制是在聚苯胺部分上的电荷中和,其最终抑制质子化,从而导致聚苯胺的电导降低。在氰化物浓度的三个范围内(10(-10)M到10(-8)M; 10(-8)M到10(-6)M和10(-6)M到10(- 3)M)。尽管发现该设备在第一范围内不敏感,但它在第二范围内充当检测器,在第三范围内充当比例传感器。发现该设备的最低检出限为10 nmol L-1(2.6 ppt),大大低于WHO的指导值。已经在各种条件下,例如不同的pH和聚合物的电化学状态下研究了响应。已经发现,当前的器件在接近中性pH的条件下相对于Ag / AgCl电位更好,为400 mV。研究了传感器的重现性和可重复性,并进行了干扰研究。

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