Gel-supported inorganic achiral quantum dot
A quantum dot, achiral technology, applied in the field of quantum dots, to achieve the effect of simple process, small environmental impact factors and low cost
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Embodiment 1
[0041] A method for preparing a gel-loaded inorganic achiral quantum dot, the method comprising the following steps:
[0042] (1) Mix 100 μL of water with 10 μL of an aqueous solution of ZnSe / ZnS quantum dots with a maximum emission wavelength of 437 nm (concentration 20 mg / mL), add 1 mL of ethanol, and mix again to obtain a mixed solution;
[0043] (2) Mix the mixed solution obtained in step (1) with 20 mg LGAm, heat until the gel factor is completely dissolved, and cool to obtain gel-loaded inorganic achiral quantum dots.
[0044] The LGAm gelling factor was replaced by the DGAm gelling factor, and the above conditions were used to prepare the gel-supported inorganic achiral quantum dots again.
[0045] Use light with a wavelength of 360nm as the excitation wavelength to excite the above two mixed systems for CPL test. The results are shown in the attached figure 1 The maximum emission wavelength shown is 437nm, in which the L-type gelling factor obtains a positive CPL sign...
Embodiment 2
[0048] A method for preparing a gel-loaded inorganic achiral quantum dot, the method comprising the following steps:
[0049] (1) Mix 10 μL of water with 100 μL of an aqueous solution of ZnSe / ZnS quantum dots with a maximum emission wavelength of 437 nm (concentration 10 mg / mL), add 1.8 mL of ethanol, and mix again to obtain a mixed solution;
[0050] (2) Mix the mixed solution obtained in step (1) with 10 mg of LGAm, heat until the gel factor is completely dissolved, and cool to obtain gel-loaded inorganic achiral quantum dots.
[0051] The LGAm gelling factor was replaced by the DGAm gelling factor, and the above conditions were used to prepare the gel-supported inorganic achiral quantum dots again.
[0052] Use light with a wavelength of 360nm as the excitation wavelength to excite the above two mixed systems for CPL test. The results are consistent with the attached figure 1 The CPL signal shown is similar.
[0053] Wherein, the surface of the quantum dots used is modifi...
Embodiment 3
[0055] A method for preparing a gel-loaded inorganic achiral quantum dot, the method comprising the following steps:
[0056] (1) Mix 20 μL of water with 180 μL of an aqueous solution of ZnSe / ZnS quantum dots with a maximum emission wavelength of 437 nm (concentration 5 mg / mL), add 1.8 mL of ethanol, and mix again to obtain a mixed solution;
[0057] (2) Mix the mixed solution obtained in step (1) with 5 mg LGAm, heat until the gel factor is completely dissolved, and cool to obtain gel-loaded inorganic achiral quantum dots.
[0058] The LGAm gelling factor was replaced by the DGAm gelling factor, and the above conditions were used to prepare the gel-supported inorganic achiral quantum dots again.
[0059] Use light with a wavelength of 360nm as the excitation wavelength to excite the above two mixed systems for CPL test. The results are consistent with the attached figure 1 The CPL signal shown is similar.
[0060] Wherein, the surface of the quantum dots used is modified by...
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