Punithakumari Ganesan
Department of Chemistry, K.Ramakrishnan College of Engineering (A), Tiruchirappalli, 621112, Tamil Nadu, India.
J Fluoresc. 2024 Sep;34(5):2073-2083. doi: 10.1007/s10895-023-03397-8. Epub 2023 Sep 11.
In recent years, there is an increasing interest in finding better and more efficient ways to detect CN ions. Most of the anthraquinone-based probes show less fluorescence This paper presents the design and synthesis of a new anthraquinone based imine probe with good colorimetric sensing property and fluorescent turn on behavior toward CN ion. Herein, we report a receptor with both colorimetric and fluorescent enhancement of cyanide ion in DMSO medium is synthesized. The synthesized receptor shows an immediate color change from orange to pink when cyanide is added; and it can be readily observed visually due to the presence of diverse p-conjugated systems in the receptor. These studies were confirmed by UV-Visible, PL studies, DFT, HRMS and H NMR titration. Moreover, this receptor shows 1:1 stoichiometry and micromolar detection limit. Further the receptor was applied to a real sample in finger millet (Eleusine Coracana) to detect the presence of cyanide ion. Moreover, the receptor is applicable toward INHIBITION, IMPLICATION logic gates with two input systems.
近年来,人们对寻找更好、更有效的方法来检测氰离子的兴趣日益浓厚。大多数基于蒽醌的探针荧光较弱。本文介绍了一种新型基于蒽醌的亚胺探针的设计与合成,该探针具有良好的比色传感性能以及对氰离子的荧光开启行为。在此,我们报道了一种在二甲基亚砜介质中对氰离子具有比色和荧光增强作用的受体的合成。合成的受体在加入氰化物时立即从橙色变为粉红色;由于受体中存在多种π共轭体系,肉眼很容易观察到这种变化。这些研究通过紫外可见光谱、荧光光谱研究、密度泛函理论、高分辨质谱和核磁共振滴定得到了证实。此外,该受体呈现1:1的化学计量比和微摩尔级的检测限。进一步地,该受体被应用于手指粟(龙爪稷)的实际样品中以检测氰离子的存在。此外,该受体适用于具有两个输入系统的抑制、蕴含逻辑门。