Rare earth long-persistence luminescent powder, preparation method and application thereof
A technology of long-lasting luminescent powder and rare earth, which is applied in the fields of application, luminescent materials, chemical instruments and methods, etc. It can solve problems such as display problems, and achieve the effects of narrow emission wavelength range, simple preparation method, and expanded range
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Embodiment 1
[0051] The invention provides a rare earth long-lasting luminescent powder, the general structural formula of the compound is Sr 1-x-y Al 2 o 4 :Eu x 2+ , Dy y 3+ (x=0.005, y=0.011), the particle size of the rare earth long-lasting luminescent powder is 1-3 μm. Such as figure 2 As shown, the excitation wavelength range of the rare earth long-lasting luminescent powder is 250-450nm, and the emission wavelength is 513nm, detected by a Japanese Hitachi F-4500 fluorescence instrument.
[0052] The afterglow time of the rare earth long-lasting luminescent powder is more than 20 hours. The method for measuring the afterglow time of luminescence in this embodiment is: irradiating the luminescent material under sunlight for 5 minutes, and then placing it in a dark room to observe its luminescence.
[0053] The preparation method of the above-mentioned rare earth long afterglow luminescent powder comprises the following steps:
[0054] 1) According to Al(NO 3 ) 3 9H 2 O:M(...
Embodiment 3
[0069] The method for using the rare earth long-lasting luminescent powder prepared in Example 1 as a latent fingerprint display reagent comprises the following steps:
[0070] 1) Use a 100-mesh sieve to sieve the commercially available reduced iron powder, and then mix the rare earth long-lasting luminescent powder prepared in Example 1 and the sieved iron powder evenly at a mass ratio of 1:9 to obtain a mixture ;
[0071] 2) Use the magnetic brushing method to brush the mixture obtained in step 1) to reveal the fresh sweat and latent fingerprints left on the smooth hard paper;
[0072] 3) Use white light or ultraviolet light (365nm) to irradiate the manifested fingerprints, and collect fingerprint images in two different modes: the first is to collect fingerprint fluorescence images in the light source excitation mode; the second is to remove the light source mode, in the Self-luminous handprint images collected in a darkroom environment. Sr 1-x-y Al 2 o 4 :Eu x 2+ , ...
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