Synthesis and Application of Fluorescent Probes for Multi-Type Organelles Containing Heteroatom Polycyclic Aromatic Hydrocarbons
A polycyclic aromatic hydrocarbon and heteroatom technology, applied in the field of synthesis of heteroatom-doped polycyclic aromatic hydrocarbon fluorescent probes, can solve the problems of cumbersome synthetic routes, low atom/step economy, low yield, etc., and achieve photostability Good, good biocompatibility, simple synthetic route
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Embodiment 1
[0052] Example 1: Synthesis of 2,3-diphenylpyrano[4,3,2-kl]acridine 7-onium hexafluoroantimonate (I-a)
[0053] (1) Acridone (39.1 mg, 0.20 mmol), diphenylacetylene (71.2 mg, 0.40 mmol), [Cp*RhCl 2 ] 2 (3.1 mg, 5 μmol, 2.5 mol%), AgOAc (66.8 mg, 0.40 mmol), AgSbF 6 (13.7mg, 40μmol, 20mol%), NaSbF 6 (51.7mg, 0.20mmol) and tetrahydrofuran (1.0mL) were added to the reaction tube, stirred evenly, heated to 80°C, and reacted for 10 hours;
[0054] (2) After the reaction is completed, cool the reaction tube to room temperature, add 10 mL of dichloromethane to dilute the reaction system, filter through celite and wash with 10 to 20 mL of dichloromethane, combine the filtrates, remove the solvent under reduced pressure, and the remaining The compound was separated and purified by silica gel column chromatography (dichloromethane / ethyl acetate=15:1, v / v), and the target product 2,3-diphenylpyran[4,3,2 was obtained after vacuum drying. -kl]acridine 7-onium hexafluoroantimonate (I-a)...
Embodiment 2
[0055] Example 2: Synthesis of 2,3-diphenylpyrano[4,3,2-kl]acridine (II-a)
[0056] (1) Acridone (39.1 mg, 0.20 mmol), diphenylacetylene (71.2 mg, 0.40 mmol), [Cp*RhCl 2 ] 2 (3.1 mg, 5 μmol, 2.5 mol%), AgOAc (66.8 mg, 0.40 mmol), AgSbF 6 (13.7mg, 40μmol, 20mol%), NaSbF 6 (51.7mg, 0.20mmol) and tetrahydrofuran (1.0mL) were added to the reaction tube, stirred evenly, heated to 80°C, and reacted for 10 hours;
[0057] (2) After the reaction is completed, cool the reaction tube to room temperature, add 10 mL of dichloromethane to dilute the reaction system, filter through celite and wash with 10 to 20 mL of dichloromethane, combine the filtrates, remove the solvent under reduced pressure, and the remaining The compound was separated and purified by neutral alumina column chromatography (dichloromethane / ethyl acetate=10:1, v / v), and the target product 2,3-diphenylpyran was obtained after vacuum drying. 4,3,2-kl]acridine (II-a) 55.7 mg, yield 75%. 1 H NMR (400MHz, CD 2 Cl 2 )...
Embodiment 3
[0058] Example 3: Synthesis of 2,3-diphenyl-7-methyl-7H-pyrano[4,3,2-kl]acridine-1-onium hexafluoroantimonate (III-a)
[0059] (1) N-methylacridone (41.8mg, 0.20mmol), diphenylacetylene (71.2mg, 0.40mmol), [Cp*RhCl 2 ] 2 (3.1 mg, 5 μmol, 2.5 mol%), AgOAc (66.8 mg, 0.40 mmol), AgSbF 6 (13.7mg, 40μmol, 20mol%), NaSbF 6 (51.7mg, 0.20mmol) and tetrahydrofuran (1.0mL) were added to the reaction tube, stirred evenly, heated to 80°C, and reacted for 10 hours;
[0060] (2) After the reaction is completed, cool the reaction tube to room temperature, add 10 mL of dichloromethane to dilute the reaction system, filter through celite and wash with 10 to 20 mL of dichloromethane, combine the filtrates, remove the solvent under reduced pressure, and the remaining The compound was separated and purified by silica gel column chromatography (dichloromethane / ethyl acetate=20:1, v / v), and the target product 2,3-diphenyl-7-methyl-7H- Pyran[4,3,2-kl]acridine-1-onium hexafluoroantimonate (III-a)...
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