摘要:
Embodiments of luminescent phosphor-containing materials include a medium and particles of a phosphor compound dispersed in the medium. The phosphor compound includes a host lattice comprising at least one alkaline earth element, manganese, and europium (e.g., divalent manganese and divalent europium). Embodiments of methods for producing such a phosphor-containing material include preparing a phosphor compound that includes the phosphor compound particles, and dispersing the particles in the medium to produce the phosphor-containing material. The material may then be incorporated into an article. Embodiments of a method for identifying a phosphor-containing material incorporated with an article include exposing a portion of the article to exciting radiation (e.g., light produced by a blue diode), and determining whether a detected emission produced as a result of the exciting radiation indicates a manganese emission following a europium absorption for at least a first time period after termination of the exposing step.
摘要:
Disclosed are non stoichiometric Copper Alkaline Earth Silicate phosphors activated by divalent europium for using them as high temperature stable luminescent materials for ultraviolet or daylight excitation. The phosphors are represented as the formula (BauSryCawCux)3−y(Zn,Mg,Mn)zSi1+bO5+2b:Eua. The nonstoichiometric tetragonal silicate is prepared in a high temperature solid state reaction with a surplus of silica in the starting mixture. Furthermore, luminescent tetragonal Copper Alkaline Earth Silicates are provided for LED applications, which have a high color temperature range from about 2,000K to 8,000K or 10,000K showing a CRI with Ra=80˜95, when mixed with other luminescent materials.
摘要:
A method of growing a rare-earth oxyorthosilicate crystal, and crystals grown using the method are disclosed. The method includes preparing a melt by melting a first substance including at least one first rare-earth element and providing an atmosphere that includes an inert gas and a gas including oxygen.
摘要:
The invention relates to a scintillator material comprising a cerium-doped rare-earth silicate, characterized in that its absorbance at a wavelength of 357 nm is less than its absorbance at 280 nm. This material has an afterglow of generally less than 200 ppm after 100 ms relative to the intensity measured during an X-ray irradiation. It is preferably codoped. It may be obtained using an oxidizing anneal. It is particularly suited to integration in an ionizing particle detector that may be used in a medical imaging apparatus.
摘要:
The present invention provides blue-green silicate luminescent materials, which are rare earth activated alkaline-earth metals silicates having a formula of Ba1-bMbSi2O(5-a/2)Da:Eux, Lny, wherein M is one or two elements selected from the group consisting of Mg, Ca and Sr; D is one or two ions selected from the group consisting of Cl− and F−; Ln is an ion selected from Ce, Er, Pr or Mn; a, b, x, and y are molar coefficients and within following ranges: 0≦a
摘要翻译:本发明提供蓝色 - 绿色硅酸盐发光材料,它们是具有式Ba1-bMbSi2O(5-a / 2)Da:Eux,Lny的稀土活化的碱土金属硅酸盐,其中M是选自以下的一种或两种元素: 由Mg,Ca和Sr组成的组; D是选自Cl-和F-的一种或两种离子; Ln是选自Ce,Er,Pr或Mn的离子; a,b,x和y是摩尔系数,并在以下范围内:0&nlE; a <2,0&nlE; b <0.5,0
摘要:
A red-emitting luminescent material that belongs to the class of nitridosilicates and is doped with at least one activator D, in particular Eu, wherein the material is a modified D-doped alkaline earth nitridosilicate M2Si5N8, where M=one or more elements belonging to the group Sr, Ca, Ba, with the nitridosilicate having been stabilized by an oxidic or oxinitridic—in particular alkaline earth—phase
摘要:
To provide a phosphor for manufacturing an one chip type LED illumination, etc, by combining a near ultraviolet/ultraviolet LED and a blue LED, and having an excellent emission efficiency including luminance. The phosphor is given as a general composition formula expressed by MmAaBbOoNn:Z, (where element M is one or more kinds of elements having bivalent valency, element A is one or more kinds of elements having tervalent valency, element B is one or more kinds of elements having tetravalent valency, O is oxygen, N is nitrogen, and element Z is one or more kinds of elements acting as an activator.), satisfying a=(1+x)×m, b=(4−x)×m, o=x×m, n=(7−x)×m, 0≦x≦1, wherein when excited by light in a wavelength range from 300 nm to 500 nm, the phosphor has an emission spectrum with a peak wavelength in a range from 500 nm to 620 nm.
摘要:
The invention relates to phosphors having a garnet structure of the formula I (Ya,Lub,Sec,Tbd,The,Irf,Sbg)3−x (Al5−yMgy/2Siy/2)O12:Cex (I), where +b+c+d+e+f+g+h+i=1×=0.005 to 0.1 and y=0 to 4.0, and to a process for the preparation of these phosphors and to the use as conversion phosphors for conversion of the blue or near-UV emission from an LED.
摘要翻译:本发明涉及具有式I(Ya,Lub,Sec,Tbd,The,Irf,Sbg)3-x(Al5-yMgy / 2Siy / 2)O12:Cex(I)的石榴石结构的荧光体,其中+ b + c + d + e + f + g + h + i = 1×= 0.005〜0.1,y = 0〜4.0,以及用于制备这些荧光体的方法以及用作转换蓝色 或来自LED的近紫外发射。
摘要:
LSO scintillation crystals with improved scintillation and optical properties are achieved by controlled co-doping a LSO crystal melt with amounts of cerium and an additional codopant such as calcium or other divalent cations. Crystal growth atmosphere is optimized by controlling the amount of oxygen in the atmosphere. Zinc is added as an additional material to restabilize crystal growth where calcium co-dopant is added. The decay time of the scintillation crystal can be controlled by controlling the concentration of co-dopant added.