Preparation method of manganese-doped all-inorganic lead chloride perovskite nanosheets
A technology of manganese doping and perovskite, applied in nanotechnology, nano optics, nanotechnology, etc., to achieve high fluorescence quantum efficiency, good stability, and strong stability
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Embodiment 1
[0031] In Example 1, manganese-doped lead chloride perovskite nanosheets were synthesized by a high-temperature liquid phase method, which specifically included the following steps:
[0032] (1) Metal chloride salt PbCl 2 and MnCl 2 According to the molar ratio of 2:3 (lead chloride 20.9mg, manganese chloride 14.2mg), add 1.5mL oleic acid, 1.5mL oleylamine, 1mL TOP 5mL 1-octadecene solution, heat to 120 ° C, completely under vacuum dissolve.
[0033] (2) Under nitrogen protection, inject 0.4 mL of cesium source precursor CsOA into the solution in (1) above. Wherein, the preparation method of the added cesium oleate (CsOA) precursor solution is: 814mg cesium carbonate CsCO 3 , 2.5mL oleic acid OA, 40mL 1-octadecene were added to a 100mL three-necked flask, the temperature was raised to 120°C under vacuum and kept for 1h, then the temperature was raised to 150°C and kept for 4h, and the heating was removed and naturally cooled to room temperature.
[0034] (3) Continue to ra...
Embodiment 2
[0037] Similar to Example 1, the difference is that manganese-doped lead chloride perovskite nanosheets can also be obtained by prolonging the reaction time in Example 1 to 20 min.
Embodiment 3
[0039] Similar to Example 1, the difference is that by adjusting five groups of PbCl 2 / MnCl 2 The ratiometric spectra contrast the effect of manganese doping concentration on the luminescent properties. Such as Figure 5 As shown, when the adjusted ratios are Pb:Mn=4:1, 3:2, 1:1, 2:3, 1:4, there are differences in the luminous efficiency of manganese with different ratios of Pb and Mn, wherein the ratio is The luminous efficiency of the material is the highest at 2:3.
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