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1.
A new benzothizole-based fluorescent probe 1 for Hg2+ recognition utilizing “ESIPT+AIE” strategy has been developed. In THF/H2O (1:1, v/v, PBS 20 mM, pH = 8.5) mixed solution, probe 1 displays rapid fluorescence responses to Hg2+ ions with high selectivity and sensitivity through Hg2+-triggered releasing of a compound possessing “ESIPT+AIE” characteristics. Cell imaging investigations indicate that probe 1 is cell permeable with low toxicity to MCF-7 cells, and applicable to detect Hg2+ ions in living MCF-7 cells.  相似文献   

2.
We developed a simple Cu2+-selective turn-on fluorescence signaling probe based on the hydrolysis of 1-pyrenecarbohydrazide (1) to 1-pyrenecarboxylic acid. Probe 1 exhibited prominent fluorescence signaling of Cu2+ ions in a 10% aqueous Tris-buffered (pH 7.0) DMSO solution with a detection limit of 5.93 × 10?8 M. Signaling with control compounds derived from pyreneacetic acid and pyrenebutyric acid showed that the fluorescence signal became less pronounced as the distance between the hydrazide functionality and the pyrene fluorophore increased. As a practical application, this probe was employed for the determination of Cu2+ in a simulated semiconductor wastewater.  相似文献   

3.
A new tetraphenylethene-based fluorescent probe 2-(quinolin-8-yliminomethyl)-4-triphenylvinyl-phenol (HL) for detecting Zn2+ ion through the excited state intramolecular proton transfer (ESIPT) and chelation enhanced fluorescence (CHEF) processes has been designed and synthesized. The results show that HL emits relatively strong blue fluorescence at 460 nm without Zn2+ ion, however, probe HL displays highly pink fluorescent emission at 600 nm when adding Zn2+ ion. The fluorescent emission of HL appears an extremely large Stokes shift, which effectively reduces the interference of background signal. The limit of detection of HL for Zn2+ ion can reach to 9.0 × 10–8 M.  相似文献   

4.
A simple Schiff base CTS, synthesized between 2-hydroxy-1-naphthaldehyde and 2-benzylthio-ethanamine, was found to be a good turn-on fluorescence probe for the detection of Zn2+, due to the restriction of the rotation of the bond between CN and naphthalene ring and/or the blocking of the photo-induced electron transfer (PET) mechanism of the nitrogen atom to naphthalene ring. Excellent selectivity for Zn2+ was evidenced, over many other competing ions, including Fe3+, Cr3+, Ni2+, Co2+, Fe2+,Mn2+, Ca2+, Hg2+, Pb2+, Cu2+, Mg2+, Ba2+, Cd2+, Ag+, Li+, K+, and Na+, in EtOH/HEPES buffer (95:5, v/v, pH = 7.4). It was noteworthy that Cd2+ had no interference with Zn2+. The stoichiometric complex of CTS-Zn2+ was determined to be 2:1 for CTS and Zn2+ in molar, based on the Job plot and single crystal X-ray diffraction data. The binding constant of the complex was 85.7 M?2 with a detection limit of 5.03 × 10?7 M. The fluorescence bio-imaging capability of CTS to detect Zn2+ in live cells was also studied. These results indicated that CTS could serve as a favorable probe for Zn2+.  相似文献   

5.
A borondipyrrolemethene-based compound (1) is synthesized and used as a “turn-on” fluorescent probe for silver ions (Ag+). The probe displays highly sensitive fluorescence response toward Ag+ with a 40-fold fluorescence enhancement when 60 μM of Ag+ is added. The fluorescence intensity of the probe is linearly dependent on Ag+ concentration ranging from 0.05 to 60 μM. And the detection limit (LOD) can reach 0.02 μM, which complies with the standard of World Health Organization (WHO) for drinking water (0.9 μM). Moreover, the probe shows remarkable selectivity for Ag+ over other metal ions. Furthermore, the response behavior of 1 toward Ag+ is pH independent in the neutral range from 6.0 to 8.0. The response of 1 toward Ag+ is fast (response time is less than 2 min) and reversible chemically. What’s more, the sensing mechanism of probe 1 toward Ag+ is verified by mass spectra (MS) and density functional theory (DFT) calculations. In particular, the probe is applied for detection of Ag+ in water samples and living cells successfully.  相似文献   

6.
Anthroneamine derivatives 13 (H2O:DMSO; 9:1, HEPES buffer, pH 7.0 ± 0.1) undergo highly selective fluorescence quenching with Hg2+. The observed linear fluorescence intensity change allows the quantitative detection of Hg2+ between 200 nM/40 ppb—12 μM/2.4 ppm even in the presence of interfering metal ions viz. Na+, K+, Mg2+, Ca2+, Ba2+, Cr3+, Fe2+, Co2+, Ni2+, Cu2+, Zn2+, Ag+, Cd2+, Pb2+. Probes 13 and their Hg2+ complexes also show the broad pH resistance for their practical applicability.  相似文献   

7.
Two low cytotoxic fluorescence probes Rb1 and Rb2 detecting Fe3+ were synthesized and evaluated. Rb1 and Rb2 exhibited an excellent selectivity to Fe3+, which was not disturbed by Ag+, Li+, K+, Na+, NH4+, Fe2+, Pb2+, Ba2+, Cd2+, Ni2+, Co2+, Mn2+, Zn2+, Mg2+, Hg2+, Ca2+, Cu2+, Ce3+, AcO?, Br?, Cl?, HPO42?, HSO3?, I?, NO3?, S2O32?, SO32? and SO42? ions. The detection limits were 1.87 × 10?7 M for Rb1 and 5.60 × 10?7 M for Rb2, respectively. 1:1 stoichiometry and 1:2 stoichiometry were the most likely recognition mode of Rb1 or Rb2 towards Fe3+, and the corresponding OFF–ON fluorescence mechanisms of Rb1 and Rb2 were proposed.  相似文献   

8.
For a better insight into the spectroscopic properties of [2.2]paracyclophane in fluorescent probes, a novel rhodamine-based chemodosimeter bearing [2.2]paracyclophane 4a has been designed and synthesized. The probe 4a exhibits a highly selective and sensitive response to Hg2+ over other transition metal ions in aqueous solution. Its detection limit is determined to be 77 nM. The significant changes in the fluorescence color could be used for the naked-eye detection. Furthermore, the probe 4a shows good membrane permeability and can be applied to detect intracellular Hg2+ in human lung adenocarcinoma cells (A549 cells). The crystal structure and spectral properties of its congener 4b that contains one 12-bromo [2.2]paracyclophane group and rhodamine moiety are also investigated for a comparison.  相似文献   

9.
Quinoline-based fluorescent probe as a recognition unit was designed and synthesized in this study. The probe R1 displayed excellent selectivity and sensitivity for cadmium ions (Cd2+) over a wide range of metal ions in acetonitrile-water (MeCN-H2O) mixed solution. In order to better understand the recognition mechanism between probe and Cd2+, the density functional theory calculations were performed. Finally, the colorimetric experiment result was observed and conveniently monitored by the naked eye, and a visual detection limit of 4 × 10?6 mol L?1 was achieved. These experimental results indicated the promising potential of the probe to detect Cd2+ in biological system. Furthermore, the probe R1 was successfully used for the highly sensitive detection of Cd2+ in living cells.  相似文献   

10.
In this work, we report a novel fluorescence chemosensor HM based on the coumarin fluorophore for the quantification of Zn2+ and AcO?. HM specifically binds to Zn2+ in the presence of other competing cations, and evident changes in UV–vis and fluorescence spectra in HEPES buffer are noticed. The in situ generated HM-Zn2+ complex solution exhibit a high selectivity toward AcO? via Zn2+ displacement approach. The detection limits of HM for Zn2+ and HM-Zn2+ for AcO? were estimated to be 7.24 × 10?8 M and 9.41 × 10?8 M, respectively. HM and the resultant complex HM-Zn2+ exhibit low cytotoxicity and cell-membrane permeability, which makes them capable of Zn2+ and AcO? imaging in living Hep G2 cells. A B3LYP/6-31G(d,p) basis set was employed for optimization of HM and HM-Zn2+ complex.  相似文献   

11.
Since the copper ions (Cu2+) play a fatal role in many foundational physiological processes, it is important to develop a simple, highly sensitive and selective sensor for Cu2+ detection in living systems. Herein, an intramolecular charge transfer (ICT) and dansyl-based fluorescent chemosensor 1 was designed, synthesized and characterized for the sensitive and selective quantification of Cu2+. It exhibited remarkable fluorescence quenching upon addition of Cu2+ over other selected metal ions, attributed to the complex formation between 1 and Cu2+ with the association constant 6.7 × 105 M?1. The sensor 1 showed a fast and linear response towards Cu2+ in the concentration range from 0 to 12.5 × 10?6 mol L?1 with the detection limit of 2.5 × 10?7 mol L?1. This detection could be carried out in a wide pH range of 5.0–14. Furthermore, sensor 1 can be used for detecting Cu2+ in living cells.  相似文献   

12.
A rhodamine derivative (1) was synthesized as a fluorescence turn-on probe for copper (Cu2+) and hypochlorite (ClO?). The probe gave a fluorescence turn-on change at 587 nm with a color change from colorless to pink in the presence of Cu2+ or ClO? ions in aqueous solution. It was found that the Cu2+ ion bound to 1 in a 1:1 stoichiometry and induced a spirolactam ring opening of the rhodamine moiety leading to a fluorescence turn-on, confirmed by Job’s plot, ESI-Mass, and 1H NMR analyses. In the presence of ClO? ion, probe 1 underwent a hypochlorite-mediated oxidation and hydrolysis to produce a ring-opened rhodamine B with a fluorescence enhancement. However, these changes were not monitored in case of other metal ions, anions, and reactive redox species. In addition, probe 1 can readily react with the ClO? to provide a distinct fluorescence enhancement along with a pink color even in the presence of various competitive species.  相似文献   

13.
A novel fluorescent ratiometric chemosensor based on 4-pyren-1-yl-pyrimidine (PPM) has been designed and prepared for the detection of Hg2+ in the presence of other competing metal ions in acetonitrile. The photo exhibits fluorescence color change of PPM from blue to green without and with Hg2+, which red shift of wavelength about 105 nm in fluorescence emission spectra. It can serve as a highly selective chemodosimeter for Hg2+ with ratiometric and naked-eye detection. The photophysical properties of PPM confirmed a 2:1 (PPM–Hg2+) binding model and the spectral response toward Hg2+ was proved to be reversible.  相似文献   

14.
A novel quinoline-functionalized Schiff-base derivative PY was designed and synthesized. Sensor PY displayed highly selective and sensitive fluorescence enhancement and naked-eye color change to Fe3+ in the presence of other competing cations. The mechanisms have been supported by Job’s plot evaluation, FT-MS and theoretical calculations. The in situ generated PY-Fe3+ complex solution exhibited a high selectivity toward PPi via Fe3+ displacement approach. The detection limits of sensor PY to Fe3+ and PY-Fe3+ complex to PPi were estimated to be 4.24 × 10?8 M and 8.18 × 10?8 M, respectively. This successive recognition feature of sensor PY makes it has a potential utility for Fe3+ and PPi detection in aqueous solution. A B3LYP/6-31G(d,p) basis set was employed for optimization of PY and PY-Fe3+ complex.  相似文献   

15.
A simple highly sensitive and selective turn-on fluorescent chemosensor L based on bis-Schiff-base for Pb2+ ions was synthesized and characterized by spectroscopic techniques. L having high binding affinity towards Pb2+ ions of 2.10 × 104 M?1 selectively detects Pb2+ ions with almost no interference among various competitive ions by a 11-fold fluorescent enhancement in CH3CN/H2O (95:5, v/v) solution over a wide pH range. Moreover, sensor L displayed a lower detection limit of 3.80 × 10?7 M, which is low enough for sensing sub-millimolar concentration of Pb2+ encountered practically.  相似文献   

16.
A fluorescent probe based PET mechanism was designed, and the probe could image endogenous release of Zn2+ upon H2O2 stimulation in SH-SY5Y cells.  相似文献   

17.
Development of fluorescent chemical sensors for fluoride is important due to increased use of fluoride in environment. A fused bis[2-(2′-hydroxyphenyl)benzoxazole] 5, which is capable of giving ESIPT emission, is found to be a useful fluorescent sensor for fluoride detection. Upon binding to fluoride, bis(HBO) 5 shows a large spectral shift in both fluorescence (from ~490 nm to ~440 nm) and absorption (from 353 nm to 392 nm). In comparison with the isomeric 4, bis(HBO) 5 dramatically improves the sensitivity in fluoride binding (by an order of magnitude), revealing a large impact of regiochemistry on the sensor performance. 1H NMR has been used to study the fluoride binding, and to correlate the intramolecular hydrogen bonding with the fluoride response. Sensitivity of 5 towards fluoride is as low as 10?5 M. Bis(HBO) 5 also showed excellent selectivity towards fluoride while being silent to other anions (Cl?, Br?, HS? and PO43?), thus making 5 a potentially useful probe.  相似文献   

18.
A novel thiophene attached anthracene (TA) based fluorescent compound was designed and synthesized. The TA showed a high quantum yield (Qy = 0.34) in regard to fluorescence. We applied this TA compound to detect specific metal compound and found that it could identify CuCl2 from other metals through dramatic fluorescence change at λmax = 460 nm. It showed strong quenching fluorescence property with CuCl2 while with other metal compounds it exhibited strong blue fluorescence emission. UV/Vis absorption spectroscopy clearly demonstrated that the quenching property of TA at λmax = 460 nm was due to overlapping of the fluorescence peak of TA at λmax = 460 nm and the absorption band of CuCl2 (from 190 nm to 525 nm). Binding constant (K′), which was 0.0895 mM?2, indicated a complexation ratio between TA and CuCl2 as 1:2 and this interaction induced quenching property.  相似文献   

19.
A new rhodamine-based chemosensor was synthetized through a modified copper-catalyzed [3+2]-cycloaddition of an azidocoumarin with an alkynyl-rhodamine. Its sensing properties toward various metal cations in aqueous solutions were investigated by colorimetric changes, UV–vis and fluorescence spectroscopies. The sensor exhibited a high selectivity for Cr2+ over Cr3+ and other divalent cations such as Cu2+, Mg2+, Zn2+, Ca2+, Cd2+, Co2+, Hg2+ and Ni2+. The linear range of detection by fluorescence spectroscopy is 0.07–3.5 mM, with a detection limit of ca. 64 μM. The binding mode of Cr2+ with the sensor was rationalized through experimental evidences.  相似文献   

20.
An ESIPT-based fluorescent probe (Probe 1) using acrylate as recognition group for the selective and sensitive detection of cysteine/homocysteine (Cys/Hcy) has been developed. In the presence of Cys/Hcy, this probe was transformed into 1,3-bis(bispyridin-2ylimino)isoindolin-4-ol (dye 4) which displayed red fluorescence with a large Stokes shift (217 nm) when excited. The detection limits are as low as 5.4 nM and 7.0 nM for Cys and Hcy respectively (based on S/N = 3). Importantly, this probe has been successfully demonstrated for the detection of intracellular Cys/Hcy in living cells.  相似文献   

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