Method for preparing tricolor coding microsphere composition
A technology for encoding microspheres and compositions, applied in chemical instruments and methods, measuring devices, fluorescence/phosphorescence, etc., can solve the problems of difficult multi-color decoding, complex detection equipment, and high cost in decoding and detection systems, and achieve the expansion of encoding capacity, The effect of improving sensitivity and accuracy, reducing manufacturing and application costs
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Embodiment 1
[0040] Example 1 Preparation of the first type subball
[0041] In this embodiment, non-fluorescent mesoporous silica nanoparticles whose surface is modified with amino groups and whose particle size is 110 nm are used. As a modification of this specific implementation, the subballs can also be polymer particles; the particle size can also be 30-500nm; the surface of the subballs can also be modified with carboxyl groups or other functional groups.
Embodiment 2
[0042] Example 2 Preparation of the second type subball
[0043] In this specific embodiment, Europium with a central emission wavelength of 612nm (Eu 3+ ) Rare earth complex mesoporous silica particles are used as single-color sub-spheres. Mesoporous silica has a particle size of 110nm and is modified with amino groups (as a modification of this specific implementation, the surface of the sub-sphere can also be modified with functional groups such as hydroxyl, sulfhydryl, or carboxyl), and is selected for high quantum yield, stable fluorescence and available visible light Excited iridium metal ligand sensitizes Eu 3+ The typical preparation method is as follows:
[0044] Step 1: Ir(dfppy) 2 (pic-OH) preparation (see Biomaterials, 2014, 35(22): 5830-5839 for details)
[0045] First, 2-ethoxyethanol and water are mixed in a 250ml flask at a ratio of 3:1 (total volume is 120ml, reflux temperature is 120℃), and IrCl is added 3 ·3H 2 O (1 mmol, 355.3 mg) and 2-(2,4-difluorophenyl)pyridi...
Embodiment 3
[0053] Example 3 Preparation of the third type subball
[0054] In this specific embodiment, microspheres with fluorescent quantum dots with a central emission wavelength of 500 nm are assembled on the surface as monochromatic subspheres. The particle size of the microspheres is 110nm and is modified with amino groups (as a modification of this implementation, the surface of the subspheres can also be modified with functional groups such as hydroxyl groups); the quantum dots assembled on the surface of the subspheres choose CdSe@ZnS with a particle size of 1-10nm Nanocrystals (as a modification of this implementation, other nanocrystals with the same emission wavelength can also be used). The preparation method is the prior art and will not be detailed here.
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