Long-lasting phosphor

Compositions – Inorganic luminescent compositions – Compositions containing halogen; e.g. – halides and oxyhalides

Reexamination Certificate

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C252S30140F

Reexamination Certificate

active

06261477

ABSTRACT:

BACKGROUND OF THE INVENTION
This invention relates to a long-lasting phosphor and, more particularly, to a novel long-lasting phosphor with improved phosphorescence brightness and lifetime and with various emission wavelengths having a chemical composition RO.a(Al
l−x
Ga
x
)
2
O
3
.bM
m
O
n
.cB
2
O
3
.dEu
2+
(where R is at least one selected from the group consisting of alkaline-earth metals and Zn, and M is at least one selected from the group consisting of Y, Sc and Si).
Fluorescence is a phenomenon that a material emits visible ray when excited by an excitation source applied from outside. A fluorescent lamp, a discharge tube and a cathode ray tube (CRT) emit fluorescence. A material which emits fluorescence is called a phosphor. When light emitted by a phosphor lasts after stoppage of excitation for duration of time sufficient for the light to be perceived by the eye, i.e., about 0.1 second or longer, the light is called phosphorescence. A phosphor which has a long persistent phosphorescence is called a long-lasting phosphor or a light storage phosphor. As long-lasting phosphors, known in the art are sulfides and oxides. The ZnS:Cu sulfide long-lasting phosphors have been practically used for several decades but they are disadvantageous in that their after-glow lasts for a relatively short duration of time, i.e., about three hours at the longest. Further, this type of phosphor has a fatal defect in that a decomposition reaction of ZnS+H
2
O→Zn+H
2
S takes place under the coexistence of ultraviolet ray contained in the sunlight and moisture contained in the air, causing the phosphor to become black in color and, as a result, the after-glow characteristics significantly deteriorate within a relatively short period of time. For this reason, this type of phosphor has only limited applications such as a luminous watch and a night-time display of a location in a house.
On the other hand, reports have been made about oxide type long-lasting phosphors of m(Sr
1−x
Eu
x
)O.nAl
2
O
3
.yB
2
O
3
(Chinese Patent CN1053807A) and 4(Sr, Eu)O.7Al
2
O
3
(Chinese journal of luminescence, 12 (1991) 144.). Phosphorescence brightness and lifetime of these phosphors are still insufficient for using them for practical applications.
Since, however, these oxides have an excellent chemical durability and light resistance property, if the phosphorescent properties can be improved largely, they will be expected to have wide applications such as signs for preventing disasters, signs for indicating locations for keeping away from danger and decorations in addition to the existing applications for luminous watches and night time display in a house etc.
It is, therefore, an object of the invention to provide a novel Eu
2+
-activated alkaline-earth metal aluminate long-lasting phosphor having improved phosphorescence brightness and lifetime.
SUMMARY OF THE INVENTION
For achieving the above described object of the invention, the inventors of the present invention have conducted studies and experiments about the existing Eu
2+
-activated alkaline-earth metal aluminate long-lasting phosphors and found, which has led to the present invention, that, by introducing at least one of yttrium oxide, scandium oxide and silicon oxide into these long-lasting phosphors, phosphorescence brightness and lifetime can be both improved.
According to the invention, there is provided a long-lasting phosphor being activated by divalent europium and having a chemical composition RO.a(Al
1−x
Ga
x
)
2
O
3
.bM
m
O
n
.cB
2
O
3
.dEu
2+
(where R is at least one selected from the group consisting of alkaline-earth metals and Zn, and M is at least one selected from the group consisting of Y, Sc and Si) wherein a, b, c, d and x are within ranges of
0.3≦a≦8,
0<b≦0.2,
0.001≦c≦0.3,
0.001≦d≦0.3, and
0≦x<1.0.
If M is Y or Sc, m is 2 and n is 3; if M is Si, m is 1 and n is 2.
In the long-lasting phosphor of the present invention, Al
2
O
3
is an essential ingredient for constituting a host crystal. The long-lasting phosphor has phosphorescence brightness and lifetime in case the coefficient a which represents the composition ratio of Al
2
O
3
is within the range of 0.3≦a≦8 and no significant phosphorescence brightness and lifetime can be observed outside of this range.
Y
2
O
3
, Sc
2
O
3
and SiO
2
are indispensable ingredients for improving phosphorescence brightness and lifetime because they function to enhance or stabilize growth of a carrier trap which contributes to phosphorescence. The most effective improvements in phosphorescence brightness and lifetime have been observed in case the coefficient b which represents the composition ratio of one or more of these ingredients is within the range of 0<b≦0.2.
The coefficient c represents the composition ratio of B
2
O
3
. In case the coefficient c is within the range of 0.001≦c≦0.3, it is effective for increasing phosphorescence brightness.
The coefficient d which represents the concentration of the activator Eu
2+
should be within the range of 0.001≦d≦0.3. If d is below 0.001, absorption of light is deteriorated with the result that no phosphorescence brightness which can be observed by the naked eye can be obtained. If d exceeds 0.3, phosphorescence brightness decreases due to concentration quenching.
The coefficient x represents the ratio of substitution of Al by Ga. It is possible to substitute nearly all of Al by Ga but, to obtain a more excellent property, the substitution should be made preferably within the range of x<0.5 and, more preferably, within the range of x<0.2.
DETAILED DESCRIPTION OF THE INVENTION
The long-lasting phosphors of the invention can be produced by sintering. The starting materials of the long-lasting phosphors of the present invention includes the following materials:
(1) alkaline-earth metal oxide (RO) or a compound such as alkaline-earth metal carbonate, nitrate or halide which can be converted easily to R
2+
at a high temperature
(2) aluminum oxide (Al
2
O
3
) or a compound such as aluminum nitrate, hydroxide or halide which can be converted easily to Al
3+
at a high temperature
(3) yttrium oxide (Y
2
O
3
) or a compound such as yttrium nitrate or halide which can be converted easily to Y
3+
at a high temperature
(4) scandium oxide (Sc
2
O
3
) or a compound such as scandium nitrate or halide which can be converted easily to Sc
3+
at a high temperature
(5) silicon oxide (SiO
2
) or a compound such as silicon nitrate or halide which can be converted easily to Si
4+
at a high temperature
(6) europium oxide (Eu
2
O
3
) or a compound such as europium carbonate, nitrate or halide which can be converted easily to Eu
2+
at a high temperature
These materials are weighed at a predetermined ratio and mixed sufficiently. The mixed materials are put in an aluminum crucible and sintered in a reducing atmosphere under the temperature within a range from 1100° C. to 1600° C. for about one hour to ten hours. In some cases, depending upon the composition of the phosphor, a sintered material may be crushed and subjected to sintering again under the same sintering conditions.
In synthesizing the long-lasting phosphor of the present invention, a phosphorous compound such as NH
4
H
2
PO
4
or a halide such as NH
4
F, NH
4
Cl or NH
4
Br may be added as a flux. An optimum amount of addition of such flux is within a range from 0.02 mol % to 8 mol %.


REFERENCES:
patent: 5961884 (1999-10-01), Endo et al.
patent: 6010644 (2000-01-01), Fu et al.
patent: 1053807A (1991-08-01), None
patent: 59-102979 (1984-06-01), None
Chinese Journal of Luminescence, vol. 12, No. 2, p. 144 (Jun. 1991).

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