Ag(I) coordination compound with dichloromethane fluorescence enhancement effect, preparing method and application
A dichloromethane, fluorescence enhancement technology, applied in the direction of silver organic compounds, 1/11 organic compounds without C-metal bonds, fluorescence/phosphorescence, etc., can solve the problem that dichloromethane molecules cannot emit fluorescence and the molecules lack activity site, difficulty in interaction and other issues, to achieve the effect of easy mass production, simple method and mild reaction conditions
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[0034] The embodiment of the present invention also provides a preparation method of an Ag(I) complex having the fluorescence enhancement effect of dichloromethane. The Ag(I) complex uses silver nitrate as a metal salt and 5,12-diazatetra Acene is an organic ligand, which is prepared by the natural volatilization method of dichloromethane / methanol / acetonitrile three solvent components, and the preparation method of the Ag(I) complex specifically includes the following steps:
[0035] S1. Dissolve 5,12-diazatetracene in dichloromethane. The mass ratio of 5,12-diazatetracene to dichloromethane is preferably 1:1.2×10 3 -1.5×10 3 , to obtain the first solution, silver nitrate is dissolved in anhydrous methanol, the mass ratio of silver nitrate and anhydrous methanol is preferably 1:0.35×10 3 -0.44×10 3 , to obtain the second solution.
[0036] S2. Mix the first solution with the second solution to form a precipitate, and carefully add acetonitrile dropwise while stirring. The m...
Embodiment 1
[0041] This example provides an Ag(I) complex with dichloromethane fluorescence enhancement effect, which is prepared according to the following process:
[0042] Weigh 10 mg of DAT and dissolve it in 10 mL of dichloromethane (the mass ratio of DAT to dichloromethane is 1:1.325×10 3 ), to obtain the first solution, weigh 20mg of AgNO 3 Dissolve in 10 mL of anhydrous methanol (AgNO 3 The mass ratio to anhydrous methanol is 1:0.395×10 3 ) to obtain the second solution.
[0043] Mix the first solution and the second solution, a brownish-red precipitate is produced immediately, and carefully add 15 mL of acetonitrile dropwise under stirring (the mass ratio of DAT to acetonitrile is 1:1.185×10 3 ), the rate of addition of acetonitrile was 2 drops / second until the precipitate was completely dissolved to obtain a red clear solution.
[0044] The red clear solution was placed in a dark place and evaporated naturally at room temperature. After 4 days, dark red rod-shaped crystals w...
Embodiment 2
[0052] This example provides an Ag(I) complex with dichloromethane fluorescence enhancement effect, which is prepared according to the following process:
[0053] Weigh 10 mg of DAT and dissolve it in 9 mL of dichloromethane (the mass ratio of DAT to dichloromethane is 1:1.2×10 3 ), to obtain the first solution, weigh 20mg of AgNO 3 Dissolve in 8.86mL of anhydrous methanol (AgNO 3 The mass ratio to anhydrous methanol is 1:0.35×10 3 ) to obtain the second solution.
[0054] Mix the first solution and the second solution, a brownish-red precipitate is produced immediately, and carefully add 10 mL of acetonitrile dropwise under stirring (the mass ratio of DAT and acetonitrile is 1:0.79×10 3 ), the rate of addition of acetonitrile was 3 drops / second until the precipitate was completely dissolved to obtain a red clear solution.
[0055] Put the red clear solution in a dark place and let it evaporate naturally at room temperature. After 3 days, dark red rod-shaped crystals were ...
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