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无活性氢、Z-异构体选择性异吲哚酮衍生的“开启”荧光双阴离子传感器。

Active Hydrogen Free, Z-Isomer Selective Isatin Derived "Turn on" Fluorescent Dual Anions Sensor.

作者信息

Shenbagapushpam Muthumanickam, Ashwin Bosco Christin Maria Arputham, Mareeswaran Paulpandian Muthu, Yuvaraj Paneerselvam, Kodirajan Selvakumar

机构信息

Department of Chemistry, Thiagarajar College (Affiliated to Madurai Kamaraj University), Madurai, Tamil Nadu, India.

Department of Chemistry, Mannar Thirumalai Naicker College, Madurai, Tamil Nadu, India.

出版信息

J Fluoresc. 2025 Jun;35(6):3905-3921. doi: 10.1007/s10895-024-03762-1. Epub 2024 Jun 19.

Abstract

An efficient and anions fluorescence "on-off" sensor of 1-(prop-2-yn-1-yl)-3-(quinolin-3-ylimino)indolin-2-one (PQI) has been developed for the selective sensing of dual anions of F and NO ions in aqueous medium. Active hydrogen and Lewis acidic binding sites free, Z- isomer of isatin based π-conjugated quinoline exhibited excellent sensing activity against F and NO ions in UV light. The fluorescence turns on the process accomplished via the PET "on-off" mechanism. The interaction between probe molecule and anions is thought to be a non-covalent interaction of the low electron density covalently bonded N-methylene moiety of propargyl isatin (-N-CH-) of probe molecule with F ion and the terminal acidic proton of propargyl group of isatin (-C≡C-H) with NO ions. The modes of anions binding with PQI and plausible mechanisms are proposed by H and C NMR titrations. The selectivity of anions sensing may be offered by the bucked structure of the Z-isomer. The calculated association constant values for PQI and F and NO are ions 2.5 × 10 M and 2.2 × 10 M, respectively, indicating strong binding interaction between the PQI and anions. The association nature of anions and probes was analyzed by a Jobs plot and the finding indicates both F and NO ions are in 1:1 complexation with PQI. The limit of detection (LOD) of the probe with F and NO ions is calculated and is to be 6.91 × 10 M and 9.93 × 10 M, respectively. The proposed PQI fluorophore possesses a low limit of detection (LOD) for both F and NO ions which is within the WHO prescribed detection limit.

摘要

已开发出一种高效的1-(丙-2-炔-1-基)-3-(喹啉-3-基亚氨基)吲哚啉-2-酮(PQI)阴离子荧光“开-关”传感器,用于在水性介质中选择性检测F⁻和NO₂⁻双阴离子。基于异吲哚酮的π共轭喹啉的Z-异构体,其活性氢和Lewis酸性结合位点自由,在紫外光下对F⁻和NO₂⁻离子表现出优异的传感活性。荧光开启过程通过PET“开-关”机制完成。探针分子与阴离子之间的相互作用被认为是探针分子炔丙基异吲哚酮的低电子密度共价键合N-亚甲基部分(-N-CH-)与F⁻离子以及异吲哚酮炔丙基的末端酸性质子(-C≡C-H)与NO₂⁻离子之间的非共价相互作用。通过¹H和¹³C NMR滴定提出了阴离子与PQI的结合模式和可能的机制。Z-异构体的弯曲结构可能提供阴离子传感的选择性。PQI与F⁻和NO₂⁻的计算缔合常数分别为2.5×10⁴ M⁻¹和2.2×10⁴ M⁻¹,表明PQI与阴离子之间有强结合相互作用。通过Job曲线分析了阴离子与探针的缔合性质,结果表明F⁻和NO₂⁻离子均与PQI以1:1络合。计算了探针与F⁻和NO₂⁻离子的检测限(LOD),分别为6.91×10⁻⁶ M和9.93×10⁻⁶ M。所提出的PQI荧光团对F⁻和NO₂⁻离子均具有低检测限(LOD),在世界卫生组织规定的检测限范围内。

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