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    • 31. 发明授权
    • Phosphor, production method thereof and light emitting instrument
    • 荧光体及其制造方法和发光仪器
    • US07540977B2
    • 2009-06-02
    • US11663449
    • 2005-09-16
    • Naoto HirosakiRong-Jun Xie
    • Naoto HirosakiRong-Jun Xie
    • C09K11/59C09K11/08C09K11/64H01J29/20H01J11/02H01J31/12
    • H01J29/20C04B35/597C04B35/6262C04B35/62675C04B35/6268C04B35/62685C04B2235/3206C04B2235/3208C04B2235/3213C04B2235/3215C04B2235/3217C04B2235/3224C04B2235/3418C04B2235/3821C04B2235/3865C04B2235/3878C04B2235/3895C04B2235/442C04B2235/5409C04B2235/5436C04B2235/81C09K11/0883C09K11/7734H01J2211/42H01L33/502H01L2224/45144H01L2224/48247H01L2224/8592H01L2924/181H01L2924/00H01L2924/00012
    • The present invention aims at providing a chemically stabilized inorganic phosphor, among oxynitride phosphors including alkaline earths, which oxynitride phosphor emits orange or red light at longer wavelengths at higher luminance than conventional sialon phosphors activated by rare earths. The present invention further aims at providing a light emitting instrument based on the phosphor, for a lighting instrument excellent in color rendering property and for an image displaying apparatus excellent in durability.The solving means resides in provision of a fundamental phosphor comprising:a composition on a pseudo-ternary phase diagram including AO (A is one kind or two or more kinds of element(s) selected from Mg, Ca, Sr, and Ba; and AO is oxide of A), Si3N4, and SiO2 as end members, respectively, and satisfying all of the following conditions:in a composition formula, pAO-qSi3N4-rSiO2(p+q+r=1), 0.1≦p≦0.95  (1), 0.05≦q≦0.9  (2), and 0≦r≦0.5  (3), and at least a metallic element M (M is one kind or two or more kinds of element(s) selected from Mn, Ce, Nd, Sm, Eu, Tb, Dy, Ho, Er, Tm, and Yb) dissolved, in a solid state, in the composition.
    • 本发明的目的是提供一种化学稳定的无机磷光体,其包括碱土金属的氮氧化物荧光体,该氮氧化物荧光体以比由稀土活化的常规硅铝氧氮磷光体更高的亮度发出较长波长的橙色或红色光。 本发明的目的还在于提供一种基于荧光体的发光装置,用于显色性优异的照明装置和耐久性优异的图像显示装置。 解决方案在于提供一种基本荧光体,其包括:包含AO(A是选自Mg,Ca,Sr和Ba中的一种或两种以上元素的伪三元相图中的组合物;以及 AO分别为A),Si 3 N 4和SiO 2的氧化物,并满足以下所有条件:在组成式中,pAO-qSi 3 N 4 -rSiO 2(p + q + r = 1),< -formulae description =“In-line Formulas”end =“lead”?> 0.1 <= p <= 0.95(1),<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 0.05 <= q <= 0.9(2),<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 0 <= r <= 0.5(3),<?in-line-formula description = 至少一种金属元素M(M是选自Mn,Ce,Nd,Sm,Eu,Tb,Dy,Ho中的一种或两种以上的元素的直列公式“end =”tail“ ,Er,Tm和Yb)以固态溶解于其中 组成。
    • 34. 发明授权
    • Integrated capacitive microfluidic sensors method and apparatus
    • 集成电容微流体传感器的方法和装置
    • US07254008B2
    • 2007-08-07
    • US11089338
    • 2005-03-25
    • Jun XieJason ShihYu-Chong Tai
    • Jun XieJason ShihYu-Chong Tai
    • H01G7/00
    • G01N27/226B81B7/02B81B2201/0292B81B2201/058G01L9/0042G01L9/0072
    • A microfluidic device and method for capacitive sensing. The device includes a fluid channel including an inlet at a first end and an outlet at a second end, a cavity region coupled to the fluid channel, and a polymer based membrane coupled between the fluid channel and the cavity region. Additionally, the device includes a first capacitor electrode coupled to the membrane, a second capacitor electrode coupled to the cavity region and physically separated from the first capacitor electrode by at least the cavity region, and an electrical power source coupled between the first capacitor electrode and the second capacitor electrode and causing an electric field at least within the cavity region. The polymer based membrane includes a polymer.
    • 用于电容感测的微流体装置和方法。 该装置包括流体通道,其包括在第一端处的入口和在第二端处的出口,耦合到流体通道的空腔区域以及耦合在流体通道和腔区域之间的基于聚合物的膜。 另外,该器件包括耦合到膜的第一电容器电极,耦合到空腔区域的第二电容器电极,并且至少通过腔区域与第一电容器电极物理分离;以及电源,耦合在第一电容器电极和 所述第二电容器电极至少在所述腔区域内引起电场。 基于聚合物的膜包括聚合物。