Preparation method of silica-coated all-inorganic perovskite core-shell structure quantum dots
A silicon dioxide, core-shell structure technology, applied in chemical instruments and methods, luminescent materials, nanotechnology, etc., can solve problems such as optical parameter discount, and achieve the effects of short synthesis cycle, high quantum efficiency, and improved stability
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Embodiment 1
[0031] The raw material purity used in this embodiment is as follows:
[0032] Cesium carbonate (99%), n-octanoic acid (99%), lead bromide (99%), tetra-n-octylammonium bromide (98%), toluene (99%), n-hexane (97%) and APTES (3 - aminopropyltriethoxysilane, 99%).
[0033] Press as figure 1 The shown method prepares silica-coated CsPbBr at room temperature 3 / Cs 4 PbBr 6 Core-shell quantum dots.
[0034] Step 1): Inject 0.326g (1mmol) of cesium carbonate into 5ml of n-octanoic acid, and stir at room temperature for 15min to obtain a cesium precursor solution.
[0035] Step 2): 0.367g (1mmol) of lead bromide and 1.094g (2mmol) of tetraoctylammonium bromide were simultaneously added to 3ml of toluene, and magnetically stirred for 20min to obtain a lead bromide / toluene solution.
[0036] Step 3): Rapidly inject 0.7ml APTES into the lead bromide / toluene solution in step 2), and stir magnetically for 15s.
[0037] Step 4): quickly inject the cesium precursor solution in step 1)...
Embodiment 2- Embodiment 4
[0060] Compared with Example 1, most of them are the same, except that the aminosilane coupling agent used in this example is replaced by 3-aminopropyltrimethoxysilane, 3-aminopropylmethyldimethoxysilane or 3-(2-Aminoethylamino)propylmethyldimethoxysilane
Embodiment 5- Embodiment 6
[0062] Compared with Example 1, most of them are the same, except that the stirring time in step 3) of this example is 5s or 30s respectively.
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