A kind of synthesis method and application of porphyrin-type near-infrared sulfur ion fluorescent probe
A technology of a fluorescent probe and a synthesis method is applied in the field of synthesis of a porphyrin-type near-infrared fluorescent probe, and achieves the effects of reducing the interference of background fluorescence, mild conditions and simple synthesis route.
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Embodiment 1
[0030] A kind of synthetic method of porphyrin type near-infrared sulfur ion fluorescent probe (monohydroxyphenylporphyrin-2,4-dinitrobenzenesulfonate), specifically comprises the following steps:
[0031] (1) Weigh A (monohydroxyphenylporphyrin (30mg, 0.048mmol) and dissolve it in 10ml of refined dichloromethane, then add DIEA (0.019ml, 0.116mmol), then weigh B (2,4-dinitro Benzenesulfonyl chloride (17.7mg, 0.066mmol) was dissolved in 10ml of refined dichloromethane, filled with N 2 After protecting for 20 to 30 minutes, use a constant pressure dropping funnel to drop the solution of B into A, and stir at room temperature for 24 to 36 hours to obtain dichloromethane of monohydroxyphenylporphyrin-2,4-dinitrobenzenesulfonate solution;
[0032] (2) the dichloromethane solution of monohydroxyphenylporphyrin-2,4-dinitrobenzenesulfonyl ester is washed 3 to 4 times with 20ml saturated sodium chloride solution, and the organic layer is dried with anhydrous sodium sulfate ( Stir for...
Embodiment 2
[0034] Sulfur ion detection experiment.
[0035] (1) Add 5.0ml of THF, 1.16mmol L to a 10ml volumetric flask -1 Probe solution 86 μl, pH 7.4 0.2mol.L -1 0.5ml of phosphate buffer solution, diluted to 10ml with twice distilled water, to obtain a concentration of 10μmol L -1 probe solution. Take 3.0ml probe solution and add it into 4ml cuvette, add S 2- , so that the concentrations are 0, 0.5, 1.0, 2.0, 3.0, 4.0, 5.0, 6.0, 7.0, 8.0, 9.0, 10 μmol L -1 . Stir the reaction at room temperature for 8 minutes to measure its fluorescence emission spectrum (λ ex =550nm,λ em = 570nm). to obtain probes with different concentrations of S 2- The fluorescence emission spectrum of the reaction (see image 3 ). Depend on image 3 It can be seen that the fluorescence intensity of the probe solution itself is very small, when adding S 2- After 8 minutes of reaction, the fluorescence intensity of the reaction system was significantly enhanced, and with the S 2- As the concentration inc...
Embodiment 3
[0038] Sulfide ion selectivity experiment.
[0039] (1) Add 5.0ml THF, 1.16mmol.L, to a 10ml volumetric flask -1 Probe solution 86 μl, pH 7.4 0.2mol.L -1 0.5ml of phosphate buffer solution, diluted to 10ml with twice distilled water, to obtain a concentration of 10μmol L -1 Probe solution. Take 3.0ml probe solution and add it into 4ml cuvette, add anion: S 2- , I - , Cl - , Br - ,C 2 o 4 2- , SO 3 2- , HSO 3 - , F - ,NO 2 - , Ac - , SO4 2- ,NO 3 - , S 2 o 3 2- , CO 3 - , SCN - , HCO 3 - , so that the concentration is 5μmol.L -1 , measured its fluorescence intensity (λ ex =550nm;λ em =570nm), obtain the fluorescence emission spectrum figure after probe reacts with different anions (see Figure 5 ). Depend on Figure 5 It can be seen that adding S 2- After adding the same concentration of other anions, the fluorescence intensity was significantly enhanced, but the fluorescence intensity was almost unchanged after adding the same concentration of...
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