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    • 2. 发明授权
    • UV solid light source of inorganic powder
    • UV固体光源的无机粉末
    • US08034257B2
    • 2011-10-11
    • US12076288
    • 2008-03-17
    • Soshchin NaumWei-Hung LoChi-Ruei Tsai
    • Soshchin NaumWei-Hung LoChi-Ruei Tsai
    • C09K11/79
    • C09K11/7792H05B33/14Y02B20/181
    • An inorganic powder uses a UV solid light source applied for the UV LEDs, in which an inorganic powder is based on the inorganic powder of n-silicate group II elements, and its ingredients have valence 2 ions, such as Eu+2, Sm+2, Yb+2 and Dy+2, valence 3 ions Ce+3, Tb+3 and/or Eu+3. The chemical formula of the components is Me+21-xLn+32-ySi2O8:TR+2x:TR+3y, and x=0.0-0.2, y=0.0-0.1. A main structure thereof is a hexagonal crystal structure. When the indium gallium nitride and gallium nitride based allomorphous semiconductor short wave UV light is used under conditions of excitement, the multiple band white light can be obtained.
    • 无机粉末使用用于UV LED的UV固体光源,其中无机粉末基于n-硅酸盐II族元素的无机粉末,其成分具有价态2离子,例如Eu + 2,Sm + 2,Yb + 2和Dy + 2,3价离子Ce + 3,Tb + 3和/或Eu + 3。 组分的化学式为Me + 21-xLn + 32-ySi2O8:TR + 2x:TR + 3y,x = 0.0-0.2,y = 0.0-0.1。 其主要结构是六方晶系结构。 当在激发条件下使用铟镓氮化镓和氮化镓基同质半导体短波紫外光时,可以获得多波段白光。
    • 6. 发明授权
    • Silicon-based photovoltaic cell and its red light conversion layer
    • 硅基光伏电池及其红光转换层
    • US07888591B2
    • 2011-02-15
    • US12124003
    • 2008-05-20
    • Soshchin NaumWei-Hung LoChi-Ruei Tsai
    • Soshchin NaumWei-Hung LoChi-Ruei Tsai
    • H01L31/00H01L25/00
    • H01L31/055H01L31/028H01L31/068Y02E10/52Y02E10/547
    • A silicon-based photovoltaic cell is disclosed having a red light conversion layer that absorbs ultraviolet rays, blue-purple or yellow-green light of the Sun's solar radiation and converts the absorption into a red, dark red and near infrared subband radiation. The maximum value of the solar radiation absorbed by the red light conversion layer is λ=470˜490 nm, and the maximum value of the photoluminescent spectrum of the red light conversion layer is within the photosensitive spectral zone of said single-crystal silicon substrate λ=700˜900 nm, i.e., in conformity with the optimal sensitivity area of silicon-based solar cells. The red light conversion layer has filled therein an ethyl acetoacetate or polycarbonate-based light-transmissive polymer that has evenly distributed therein a phosphor composed of α-Al2O3—Ti2O3, having a quantum efficiency of 90%.
    • 公开了一种具有红光转换层的硅基光伏电池,其吸收太阳太阳辐射的紫外线,蓝紫色或黄绿色光,并将该吸收转换成红色,深红色和近红外子带辐射。 由红光转换层吸收的太阳辐射的最大值为λ= 470〜490nm,红光转换层的光致发光光谱的最大值在所述单晶硅衬底λ的光谱区内 = 700〜900nm,即符合硅基太阳能电池的最佳灵敏度区域。 红光转换层中填充有均匀分布有量子效率为90%的由α-Al 2 O 3 -Ti 2 O 3构成的荧光体的乙酰乙酸乙酯或聚碳酸酯系的透光性聚合物。
    • 7. 发明申请
    • Orange-yellow phosphor and warm white LED using the same
    • 橙黄色荧光粉和暖白色LED使用相同
    • US20100032622A1
    • 2010-02-11
    • US12068557
    • 2008-02-07
    • Soshchin NaumWei-Hung LoChi-Ruei Tsai
    • Soshchin NaumWei-Hung LoChi-Ruei Tsai
    • C09K11/79
    • C09K11/7721H01L33/502Y02B20/181Y10T428/2991Y10T428/2993
    • A phosphor providing orange-yellow radiation is prepared from a cerium activated rear-earth garnet substrate that contains Li (lithium), Si (silicon), N (nitrogen) and F (fluorine) atoms, obtaining the overall stoichiometric equation of (ΣLn)3Al5-x-yLiy/3Mgx/2Si(x/2+2y/3)Fq/2O12-qNq/2. When the activating wavelength is 440˜475 nm, the orange sub-energy band becomes 542˜590 nm, and the radiation quantum output q>0.9, showing a cubic crystal garnet structure. The phosphor has color coordinate Σ(x+y)≧0.89, and color purity α≧0.89. The invention also provides a warm white LED that has light intensity J≧300 cd, half open angle 2θ≧60°, luminous efficiency 65 ≦ζ≦100 lm/W, and color temperature within 2800≦T≦5500K.
    • 由含有Li(锂),Si(硅),N(氮)和F(氟)原子的铈活化的后石榴石基体制备提供橙黄色辐射的荧光体,得到(SigmaLn)的总化学计量方程式 3Al5-x-yLiy / 3Mgx / 2Si(x / 2 + 2y / 3)Fq / 2O12-qNq / 2。 当激活波长为440〜475nm时,橙色子能带变为542〜590nm,辐射量子输出q> 0.9,呈现立方晶体石榴石结构。 荧光体具有色坐标Sigma(x + y)> = 0.89,色纯度α> 0.89。 本发明还提供一种温暖的白色LED,其光强度J> = 300cd,半开角度θ= 60°,发光效率65 <= zeta <= 100lm / W,色温在2800 <= T < 5500K。