...
首页> 外文期刊>New Journal of Chemistry >1-Adamantanamine-based triazole-appended organosilanes as chromogenic “naked-eye” and fluorogenic “turn-on” sensors for the highly selective detection of Sn2+ ions
【24h】

1-Adamantanamine-based triazole-appended organosilanes as chromogenic “naked-eye” and fluorogenic “turn-on” sensors for the highly selective detection of Sn2+ ions

机译:基于1-金刚烷胺的三唑附加有机硅烷作为显色“裸眼”和荧光“开启”传感器,用于高选择性检测Sn2+离子

获取原文
获取原文并翻译 | 示例

摘要

The current investigation illustrates the design and facile synthesis of the 1-adamantanamine-based organosilanes 4a–dvia a click silylation approach, and they were characterized well via NMR (1H and 13C) and mass spectroscopic techniques. All the synthesized organosilanes possessed preferential selectivity towards Sn2+ ions in the presence of other relevant ions and served as colorimetric/fluorimetric dual-channel probes. The probes have been successfully employed as “naked-eye” sensors with a visible color change in daylight from transparent white to golden yellow upon binding with Sn2+ ions. The enhancement in fluorescence is attributed to the inhibition of the PET process upon interaction with Sn2+ ions. Furthermore, BH plots reveal the presence of strong binding with 1 : 1 stoichiometry in the physiological pH range. Moreover, the limits of detection when using 4a–d towards Sn2+ found in this study are far lower than the WHO guidelines for drinking water. Interestingly, the chemosensor 4a has been successfully employed for performing recovery testing of Sn2+ in real soil samples. Owing to these enticing features, this present protocol could enormously expedite the design and development of chemosensors for the detection of Sn2+ ions.
机译:目前的研究说明了基于1-金刚烷胺的有机硅烷4a-d通过点击硅烷化方法的设计和容易合成,并且通过NMR(1H和13C)和质谱技术对其进行了很好的表征。所有合成的有机硅烷在存在其他相关离子的情况下对Sn2+离子均具有优先选择性,并可作为比色/荧光双通道探针。该探针已成功用作“肉眼”传感器,在与Sn2+离子结合后,在日光下可见颜色从透明的白色变为金黄色。荧光的增强归因于与Sn2+离子相互作用时PET过程的抑制。此外,BH 图显示生理 pH 范围内存在具有 1 : 1 化学计量的强结合。此外,本研究中发现的对Sn2+使用4a-d的检测限远低于WHO饮用水指南。有趣的是,化学传感器4a已成功用于在真实土壤样品中进行Sn2+的回收率测试。由于这些诱人的特性,本方案可以极大地加快用于检测Sn2+离子的化学传感器的设计和开发。

著录项

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