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Self-Assembly of Europium-Containing Polyoxometalates/Tetra-n-alkyl Ammonium with Enhanced Emission for Cu2+ Detection

机译:含Euro的多金属氧酸盐/四正烷基铵的自组装具有增强的发射率用于Cu2 +检测

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摘要

Lanthanide-containing polyoxometalates (POMs) can be used to detect various materials, but their luminescence in water has suffered enormous limitations due to the strong fluorescence quenching. Herein, to resolve this problem, three-dimensional nanoparticles built by mixed Weakley-type europium-containing POMs (Na9[EuW10O36]·32H2O, abbreviated to EuW10) and tetra-n-alkyl ammonium (TA) with enhanced fluorescent properties have been designed in aqueous solution using an ionic self-assembly (ISA) technique, which is mainly driven by the electrostatic interaction between EuW10 and TA. The morphology and fluorescent properties of the system as well as some influencing factors (alkyl chain length, amino group, and inorganic salt concentration) were systematically investigated. The results indicated that the fluorescent intensity of EuW10/tetramethylammonium bromide (TMAB) composite increased about 14 times, whereas the extent of increase of fluorescence for EuW10/tetraethylammonium bromide (TEAB) and EuW10/tetrabutylammonium bromide (TMAB) composites gradually decrease due to the bulkier steric hindrance of the longer alkyl chain. Besides, the luminescence of EuW10/TMAB nanoparticles is pH responsive,and the reversibility of their structures and luminescence can berealized upon the addition of NaOH/HCl. Moreover, the EuW10/TMAB system also shows great fluorescence-sensing behavior, whichcould detect Cu2+ with a detection limit of 0.15 μM.Our work provides a facile construction strategy for a functionalfluorescent complex via POMs-based supramolecular self-assembly inaqueous solution, which will be further used in biomarkers and sensors.
机译:含镧系元素的多金属氧酸盐(POM)可用于检测各种材料,但是由于强烈的荧光猝灭作用,它们在水中的发光受到极大的限制。在本文中,为了解决该问题,已经设计了由混合的Weakley型含P POM(Na9 [EuW10O36]·32H2O,缩写为EuW10)和具有增强的荧光特性的四正烷基铵(TA)制成的三维纳米颗粒。在水溶液中使用离子自组装(ISA)技术,主要由EuW10和TA之间的静电相互作用驱动。系统地研究了体系的形态和荧光性质以及一些影响因素(烷基链长,氨基和无机盐浓度)。结果表明,EuW10 /四甲基溴化铵(TMAB)复合材料的荧光强度提高了约14倍,而EuW10 /四乙基溴化铵(TEAB)和EuW10 /四丁基溴化铵(TMAB)复合材料的荧光增强程度则由于较长烷基链的空间位阻更大。此外,EuW10 / TMAB纳米颗粒的发光具有pH响应能力,其结构和发光的可逆性可以通过添加NaOH / HCl实现。此外,EuW10 / TMAB系统还具有出色的荧光传感性能,可以检测到Cu 2 + ,检测限为0.15μM。我们的工作为职能部门提供了简便的建设策略通过基于POM的超分子自组装形成荧光复合物水溶液,将进一步用于生物标志物和传感器。

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