Fluorescent boron derivative, preparation method and application thereof
A derivative and fluorescence technology, applied in the direction of fluorescence/phosphorescence, chemical instruments and methods, luminescent materials, etc., can solve problems such as the problem of zinc ion discrimination
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[0026] EXAMPLES The fluoroboron compound of the present invention has the following structure:
[0027]
[0028] It is prepared according to the following steps:
[0029] (a) Sodium 3-nitrobenzenesulfonate (17.5g, 77.7mmol), boric acid (2.4g, 38.8mmol) and ferrous sulfate heptahydrate (1.4g, 0.5mmol) were added to 23.1mL of 98% sulfuric acid by mass middle. After cooling to 0°C, glycerol (12.5mL), 2-amino-6-picoline (4.3g, 40.0mmol) and hot water (50°C, 22.5mL) were slowly added to the above mixture. Heat to 135°C and reflux for 4 hours and cool to room temperature. Adjust the pH value, dissolve the organic phase with chloroform, and purify by column chromatography (200~300mesh) to obtain the product.
[0030] Characterized as follows: 1 HNMR: δ H (400MHz; CDCl 3 ;Me 4 Si)9.08(d,1H),8.15(m,1H),8.08(d,1H),7.42(m,1H),7.28(d,H),2.82(s,3H). 13 CNMR:δ C (100MHz, CDCl 3 ):163.06, 155.96, 153.31, 136.86, 136.65, 123.03, 121.37, 120.76, 25.72.
[0031] (b) The product ob...
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