Rapid latent fingerprint presentation reagent preparation method
A technology of latent fingerprints and reagents, applied in the field of chemical detection, can solve the problems of uneven size distribution of quantum dots, complicated display process, poor display effect, etc., and achieve the effects of adjustable, luminous wavelength, and improved stability
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Embodiment 1
[0045] Example 1: Preparation of CdS quantum dots encapsulated by PAMAM dendrimers
[0046] The preparation method of the present invention is as follows:
[0047] Dilute 100mL concentration to 1×10 -4 mol L -1 G5.0-NH 2 Add the aqueous solution of PAMAM dendrimers to a 250mL round bottom flask, adjust the pH value to 7.5±0.2 with hydrochloric acid, and then 2+ To the molar ratio of PAMAM dendrimers (3:1, 5:1, 10:1, 20:1), add 0.01mol L -1 Cadmium chloride (CdCl 2 ) solution, reacted at room temperature for 48h to make Cd 2+ Fully coordinated with PAMAM dendrimers. Rejoin with Cd 2+ 0.01mol·L equivalent to the amount of substance -1 Na 2 S solution was stirred at room temperature for 1 h to make the crystal grains grow stably, and finally the yellow transparent CdS quantum dots wrapped by PAMAM dendrimers were obtained. Dialysis was carried out with a dialysis bag with a molecular weight cut off of 2,000 to obtain a pure aqueous solution of CdS quantum dots wrapped b...
Embodiment 2
[0049] Example 2: Preparation of CdS@ZnS quantum dots encapsulated by PAMAM dendrimers
[0050] The preparation method of the present invention is as follows:
[0051] Dilute 100mL concentration to 1×10 -4 mol L -1 G5.0-NH 2 Add the PAMAM dendrimer aqueous solution to a 250mL round bottom flask, adjust the pH value to 7.5±0.2 with hydrochloric acid, add 10ml 0.01mol L -1 Cadmium chloride (CdCl 2 ) solution, reacted at room temperature for 48h to make Cd 2+ Fully coordinated with PAMAM dendrimers. Rejoin with Cd 2+ The same 0.01mol·L of the number of moles -1 Na 2 S solution, stirred at room temperature for 1 h to stabilize the growth of CdS grains. Use a syringe at room temperature to alternately add new equimolar amounts of S 2- Solution (0.01mol·L -1 ) and Zn 2+ Solution (0.01mol·L -1 )(Zn 2+ The total number of moles of Cd satisfies 2+ with Zn 2+ molar ratio=1:0, 5:1, 2:3, 4:3, 3:2, 1:5, 1:1) to the CdS quantum dot solution wrapped by PAMAM dendrimers, every...
Embodiment 3
[0053] Example 3: Preparation of CdS@CdSe quantum dots wrapped by PAMAM dendrimers
[0054] Se 2- Solution preparation: add 1mL water and 0.04gNaBH in turn to a single-necked flask 4 , gently shake the vial, add 0.0395g Se powder after completely dissolved, shake until all the reactants turn from black to milky white, cover the stopper, put it on a magnetic stirrer, react at a constant temperature at 4°C for 2h, and then dilute it The concentration is 0.01mol·L -1 of aqueous solution.
[0055] Dilute 100mL concentration to 1×10 -4 mol L -1 G5.0-NH 2 Add the PAMAM dendrimer aqueous solution to a 250mL round bottom flask, adjust the pH value to 7.5±0.2 with hydrochloric acid, add 10ml 0.01mol L -1 Cadmium chloride (CdCl 2 ) solution, reacted at room temperature for 48h to make Cd 2+ Fully coordinated with PAMAM dendrimers. Rejoin with Cd 2+ The same 0.01mol·L of the number of moles -1 Na 2 S solution, stirred at room temperature for 1 h to stabilize the growth of CdS...
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