Spirobifluorene fluorescence probe as well as preparation method and application thereof
A fluorescent probe, spirobifluorene technology, applied in fluorescence/phosphorescence, chemical instruments and methods, luminescent materials, etc., to achieve the effects of wide detection range, high sensitivity and selectivity, and high sensitivity
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Embodiment 1
[0062] 1) Synthesis of 4,4’-Dimethylbiphenyl
[0063] Under the protection of nitrogen, weigh 3g (125mmol) of dry magnesium powder, 0.2g (1.2mmol) of ferric chloride in a 100ml dry three-necked flask, and then weigh 11g (64.3mmol) of p-bromotoluene in 50ml and dry The constant pressure dropping funnel. 60 ml of anhydrous THF was poured into a three-necked flask, and stirred vigorously at room temperature. First, 5% p-bromotoluene was quickly added dropwise, and after the reaction started, slowly dropwise addition. After the addition is complete, continue the reaction for 30 minutes, stop the reaction, cool to room temperature, and filter with suction to obtain a black filtrate, and remove the solvent to obtain a black paste. Add 50ml of dichloromethane and 30ml of water successively, shake vigorously, and a lot of floccules appear in the solution. Slowly add dilute hydrochloric acid solution dropwise to the solution and shake continuously until the flocs disappear.
[0064] Sep...
Embodiment 2
[0074] Example 2 The selectivity of compound (I) to silver ions (1)
[0075] The compound (I) synthesized above was used to evaluate the selectivity to silver ions by a fluorescence method. The compound (I) was dissolved in a mixed solvent of acetonitrile: water = 15:1 (volume ratio) to make the concentration 1×10 -5 M. Then add different metal ions to make the concentration of metal ions 1×10 -4 M, test its fluorescence emission spectrum. Fluorescence test conditions are: excitation wavelength 360nm, slit width 5 / 5, voltage 420V. The results are shown in image 3 in. From image 3 It can be seen that compound (I) has high selectivity to silver ions (the dotted line is silver ions, and the rest are Li + , Na + , Ca 2+ , Co 2+ , Cd 2+ , Cu 2+ , Pb 2+ , Mg 2+ , Mn 2+ , Hg 2+ And blank control). When compound (I) is combined with silver ions, the fluorescence intensity of the solution rapidly weakens to almost zero. After compound (I) is mixed with other metal ions, there is alm...
Embodiment 3
[0076] Example 3 The selectivity of compound (I) to silver ions (2)
[0077] The compound (I) synthesized above was used to evaluate the selectivity to silver ions by the method of absorption spectroscopy. The compound (I) was dissolved in a mixed solvent of acetonitrile: water = 15:1 (volume ratio), so that the concentration of the compound (I) was 1×10 -5 M, and then add different metal ions to make the metal ion concentration 1×10 -4 M, the absorption spectrum of test compound (I). The results are shown in Figure 4 Medium (the dotted line is silver ion, the rest are Li + , Na + , Ca 2+ , Co 2+ , Cd 2+ , Cu 2+ , Pb 2+ , Mg 2+ , Mn 2+ , Hg 2+ And blank control). From Figure 4 It can be seen that compound (I) has a high selectivity to silver ions, and when compound (I) is combined with silver ions, the absorbance of the solution decreases rapidly. After compound (I) is mixed with other metal ions, there is almost no change in absorbance. The abscissa is the wavelength (nm), a...
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