Manganese-doped two-dimensional lead halide perovskite material with high photoluminescence quantum yield and preparation thereof
A technology of perovskite material and quantum yield, which is applied in the direction of luminescent materials, chemical instruments and methods, etc., can solve the problems of inability to realize controllable adjustment, cumbersome synthesis steps, and low quantum yield, and achieve a simple and fast preparation method, The effect of overcoming the preparation process and excellent optical properties
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Embodiment 1
[0027] Add 4mmol ethylamine hydrobromide, 0.99mmol lead bromide and 0.01mmol manganese bromide successively in an agate mortar, grind for 10 minutes, the quantum yield of the obtained manganese-doped perovskite is 55%, and the Centered at 616nm.
[0028] The preparation method of ethylamine hydrobromide is as follows: add hydrobromic acid to ethylamine according to the molar ratio of 1:1, and stir in an ice bath for 15 minutes; After washing with ethanol, dry in an oven at 80°C.
Embodiment 2
[0030] Add 4mmol ethylamine hydrobromide, 0.95mmol lead bromide and 0.05mmol manganese bromide successively in an agate mortar and grind for 15 minutes. figure 2 As shown, its quantum yield is 90%, and the luminescent center is located at 616nm. The preparation of ethylamine hydrobromide is with embodiment 1.
Embodiment 3
[0032] Add 3mmol ethylamine hydrobromide, 1mmol ethylamine hydrochloride, 0.75mmol lead bromide, 0.25mmol lead chloride and 0.05mmol manganese bromide in sequence in an agate mortar, grind for 30 minutes, and the obtained manganese doped The quantum yield of the heterogeneous perovskite is 83%, and the luminescent center is located at 620nm. The preparation of ethylamine hydrobromide is with embodiment 1.
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