Water-soluble cyclized metal iridium complex with sugary ligand and application of complex
A technology of iridium complexes and complexes, which is applied in the direction of sugar derivatives, chemiluminescence/bioluminescence, and analysis by making materials undergo chemical reactions, can solve the problems of insoluble metal iridium luminescent probes in aqueous solution, and achieve luminescence quantum The effect of high yield
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Embodiment 1
[0030] Synthesis of sugar-containing ligand I: 0.75 g of 1-thio-β-D-glucose tetraacetate and 0.71 g of sodium carbonate were added to 0.32 g of 4,4'-dibromomethyl-2,2'-linked pyridine in DMF solution, stirred at room temperature for two days and 48 hours, spin-dried, added about 20 ml of water to dissolve, the mixture was extracted three times with ethyl acetate, the organic layer was retained, dried with sodium sulfate, and purified by column chromatography (ethyl acetate / n-hexane). , volume ratio=3:1) to obtain a white solid; dissolve the white solid in about 20 ml of methanol, add 150 mg of sodium methoxide, stir at room temperature for 12 hours, filter, precipitate and wash with methanol, and dry to obtain a white powder (yield 84%) ), which is sugar-containing ligand I.
Embodiment 2
[0032] The process or method of using the product:
[0033] (1) Metal iridium complex [(ppy) 2 Ir(I)]Cl, [(pq) 2 Ir(I)]Cl and [(pzq) 2 Detection of tripropylamine in Ir(I)]Cl aqueous solution: prepare 0.05mmol / L iridium(III) complex with 50mmol / L phosphate buffer solution (pH=7.5), use Ag / AgCl electrode as reference electrode, Pt wire As the counter electrode, a Pt disk (2 mm in diameter, Shanghai Chenhua) was used as the working electrode, and the cyclic voltammogram was scanned in the range of 0-1.4 V to obtain the corresponding electrochemiluminescence signal. Adding the same concentration of tripropylamine to various metal iridium complex solutions, the electrochemiluminescence of the system is greatly enhanced. Under the same conditions, [(pq) 2 Ir(I)]Cl has the strongest electrochemiluminescence, followed by [(bzq) 2 Ir(I)]Cl and [(ppy) 2 Ir(I)]Cl as figure 1 . Based on the relationship between the electrochemiluminescence intensity and the concentration of ...
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