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基于三齿胺[三(吡咯基-α-甲基)胺]-罗丹明缀合物的荧光化学传感器用于选择性检测锌离子。

A turn-on fluorescence chemosensor based on a tripodal amine [tris(pyrrolyl-α-methyl)amine]-rhodamine conjugate for the selective detection of zinc ions.

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan 70101, Taiwan, Republic of China.

出版信息

Analyst. 2016 Sep 21;141(18):5456-62. doi: 10.1039/c6an00486e. Epub 2016 Jul 1.

Abstract

A novel tetradendate ligand derived from a tris(pyrrolyl-α-methyl)amine (H3tpa) and rhodamine-based conjugate (PR) has been designed for use as a sensor, synthesized and characterized spectroscopically. PR {(tris(5-rhodamineiminopyrrol-2-ylmethyl)amine)} serves as a selective colorimetric as well as a fluorescent chemosensor for Zn(2+) in acetonitrile/water (1 : 1, v/v). In the presence of Zn(2+), PR exhibited obvious absorption (558 nm) and emission (577 nm) peaks whose intensity increased along with increasing Zn(2+) concentrations. Titration experiments revealed that a large excess of Zn(2+) was required to saturate the absorption (λmax) and emission intensities. Upon the addition of 1000 equivalents of Zn(2+), the fluorescence intensity of the PR underwent an ∼500-fold increase (Φf = 0.34) with the emission maximum at 580 nm. These kinetics studies demonstrated that the absorption and emission changes were proportional to the Zn(2+) concentration. The color of the solution changed from colorless to a dark pink color. The fluorescence of the PR-Zn(2+) complex can be reversibly restored by using ammonium water or by heating. Competitive ion tests revealed that the intensity of PR-Zn(2+) was not suppressed by excess amounts of other metal ions. The counter anions did not exert obvious influences on the absorption and emission profiles. (1)H-NMR and FT-IR spectroscopic investigations of PR and PR-Zn(2+) revealed that the pyrrole motifs, -C[double bond, length as m-dash]N- groups and spirolactam of rhodamine B are capable of coordinating cation guest species. Because each arm of the tripodal ligand tautomerizes independently, only moderate fluorescence enhancement could be seen until all three -C[double bond, length as m-dash]N- groups were coordinated by zinc, which may be due to the spirolactam ring opening mechanism of the rhodamine unit. Once all three -C[double bond, length as m-dash]N- groups were locked by coordinating with excess of Zn(2+), the isomerization was arrested, and PR exhibited highly enhanced fluorescence. In addition, energy optimized structures of PR were found to be cage-like by Gaussian 09, further supporting that it can access a large excess of Zn(2+). Intriguingly, imaging of HeLa cells by using a confocal microscope revealed that this PR probe could be used for biological applications.

摘要

一种新型的四齿配体,由三(吡咯基-α-甲基)胺(H3tpa)和罗丹明基共轭物(PR)衍生而来,被设计为传感器,通过光谱学方法合成并进行了表征。PR{(三(5-罗丹明亚氨基吡咯-2-基甲基)胺)}在乙腈/水(1:1,v/v)中用作选择性比色和荧光化学传感器,用于 Zn(2+)。在存在 Zn(2+)的情况下,PR 表现出明显的吸收(558nm)和发射(577nm)峰,其强度随 Zn(2+)浓度的增加而增加。滴定实验表明,需要大量的 Zn(2+)才能使吸收(λmax)和发射强度饱和。加入 1000 当量的 Zn(2+)后,PR 的荧光强度经历了约 500 倍的增加(Φf=0.34),发射最大值为 580nm。这些动力学研究表明,吸收和发射的变化与 Zn(2+)浓度成正比。溶液的颜色从无色变为深粉色。PR-Zn(2+)复合物的荧光可以通过使用氨水或加热来可逆地恢复。竞争性离子测试表明,PR-Zn(2+)的强度不受过量其他金属离子的抑制。抗衡离子对吸收和发射谱没有明显影响。PR 和 PR-Zn(2+)的 1H-NMR 和 FT-IR 光谱研究表明,吡咯基序、-C[双键,长度为 m-dash]-N-基团和罗丹明 B 的螺环内酯都能够与阳离子客体物种配位。由于三脚架配体的每个臂都可以独立互变异构,只有当所有三个-C[双键,长度为 m-dash]-N-基团都被锌配位时,才能看到适度的荧光增强,这可能是由于罗丹明单元的螺环内酯开环机制所致。一旦所有三个-C[双键,长度为 m-dash]-N-基团都通过与过量的 Zn(2+)配位而被锁定,异构化就会停止,PR 就会表现出高度增强的荧光。此外,Gaussian 09 发现 PR 的优化能量结构为笼状,进一步支持它可以获得大量的 Zn(2+)。有趣的是,使用共聚焦显微镜对 HeLa 细胞进行成像表明,这种 PR 探针可用于生物应用。

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