Ranolia Anju, Duhan Anil, Dhaka Rahul Kumar, Singh Snigdha, Joshi Gaurav, Kumar Parvin, Singh Devender, Wahajuddin Muhammad, Sindhu Jayant
Department of Chemistry, COBS&H, CCSHAU Hisar-125004 India.
Department of Chemistry, Delhi University Delhi-11007 India.
RSC Adv. 2025 Mar 24;15(12):9129-9140. doi: 10.1039/d5ra00576k. eCollection 2025 Mar 21.
Cyanide is a highly hazardous and fast-acting blood agent widely used in various industries, making its monitoring crucial due to its severe impact on living organisms. Considering this, we had developed a novel indolium based low-cost and portable sensor for the colorimetric and fluorogenic detection of cyanide ions. The probe displayed a distinct visual color change and selectively exhibits a fluorogenic "turn-off" response to cyanide ions in pure aqueous medium. The chemodosimetric-approach-based detection of cyanide ions has been confirmed using H NMR titration and DFT calculations. The presence of competing anions has minimal or no impact on the cyanide recognition process. The probe displayed an excellent detection limit as low as 3.78 nM with a response time of 5 s. The aqueous phase and optimum pH workability are some of the promising features of the developed probe. Additionally, a visual colorimetric strip based test was also developed using probe impregnated filter paper strips, which displayed a visual color change from red to colourless upon cyanide exposure. In addition to this, these test strips also showed excellent selectivity for cyanide ions, with no interference from fluoride or acetate ions. Furthermore, a smartphone-based protocol was developed to record the color change, demonstrating significant potential for cyanide detection without using sophisticated instrumentation. The formulation of the probe into an INHIBIT logic gate for facilitating cyanide recognition using electronic devices is one of the important applications.
氰化物是一种极具危险性且作用迅速的血液毒剂,广泛应用于各个行业,因其对生物体有严重影响,所以对其进行监测至关重要。考虑到这一点,我们开发了一种新型的基于吲哚鎓的低成本便携式传感器,用于比色和荧光检测氰离子。该探针在纯水性介质中呈现出明显的视觉颜色变化,并对氰离子选择性地表现出荧光“猝灭”响应。基于化学计量法的氰离子检测已通过核磁共振氢谱滴定和密度泛函理论计算得到证实。竞争性阴离子的存在对氰化物识别过程影响极小或没有影响。该探针显示出极低至3.78 nM的出色检测限,响应时间为5秒。水相和最佳pH值适用性是所开发探针的一些有前景的特性。此外,还使用浸渍有探针的滤纸开发了一种基于视觉比色条的测试,该测试条在暴露于氰化物时显示出从红色到无色的视觉颜色变化。除此之外,这些测试条对氰离子也表现出出色的选择性,不受氟离子或醋酸根离子的干扰。此外,还开发了一种基于智能手机的方案来记录颜色变化,这表明在不使用复杂仪器的情况下进行氰化物检测具有巨大潜力。将该探针制成用于使用电子设备促进氰化物识别的抑制逻辑门是重要应用之一。