형광체 및 이의 제조방법
    1.
    发明公开
    형광체 및 이의 제조방법 有权
    一种磷光体及其制备方法

    公开(公告)号:KR1020120030842A

    公开(公告)日:2012-03-29

    申请号:KR1020100092636

    申请日:2010-09-20

    Abstract: PURPOSE: A manufacturing method of β-sialon phosphor is provided to secure excellent crystallinity of phosphors by controlling the concentration of oxygen, and to improve luminance of phosphors. CONSTITUTION: A manufacturing method of β-sialon phosphor in chemical formula 1: Si_(6-z)Al_zO_yN_(8-z):Re_x comprises: a step of manufacturing a first mixture by mixing silicon precursor, aluminum precursor and precursor of active material; a step of controlling the concentration of oxygen by oxidizing the first mixture; and a step of sintering the fist mixture under nitrogen atmosphere. In chemical formula 1, x, y and z is respectively 0.018

    Abstract translation: 目的:提供β-赛隆荧光体的制造方法,以通过控制氧浓度来确保荧光体的优异结晶性,并提高荧光体的亮度。 构成:化学式1中的β-赛隆荧光体的制造方法:Si_(6-z)Al_zO_yN_(8-z):Re_x包括:通过混合硅前体,铝前体和活性物质前体来制造第一混合物的步骤 ; 通过氧化第一混合物来控制氧浓度的步骤; 以及在氮气氛下烧结第一混合物的步骤。 在化学式1中,x,y和z分别为0.018≤x≤0.3,0.3≤y≤0.75,0.42≤z≤1.0,Re为稀土原子。

    형광체 및 발광장치
    2.
    发明公开
    형광체 및 발광장치 审中-实审
    磷光和发光装置

    公开(公告)号:KR1020130065212A

    公开(公告)日:2013-06-19

    申请号:KR1020110131967

    申请日:2011-12-09

    Abstract: PURPOSE: A phosphor is provided to have excellent high temperature performance and reliability, and to improve light emitting efficiency, thereby providing a light emitting device with excellent luminance efficiency. CONSTITUTION: A phosphor comprises a phosphor composition that rare earth elements are dissolved in a base material represented by chemical formula: L_3Si_6N_11. In chemical formula, L is one or more elements selected from La, Y, Gd, and Lu. The rare earth element is one or more selected from Mn, Ce, Pr, Nd, Sm, Eu, Gd, Dy, Tb, Ho, Er, Tm, and Yb. The composition has a particle shape. The particle has a flat shape because at least parts of planes vertical to a direction maintain a crystal plane thereof.

    Abstract translation: 目的:提供荧光体以具有优异的高温性能和可靠性,并且提高发光效率,从而提供具有优异亮度效率的发光器件。 构成:荧光体包含稀土元素溶解在由化学式:L_3Si_6N_11表示的基材中的荧光体组合物。 在化学式中,L是选自La,Y,Gd和Lu中的一种或多种元素。 稀土元素是选自Mn,Ce,Pr,Nd,Sm,Eu,Gd,Dy,Tb,Ho,Er,Tm和Yb中的一种以上。 该组合物具有颗粒形状。 颗粒具有平坦的形状,因为垂直于<001>方向的平面的至少一部分保持其晶面。

    형광체 및 이의 제조방법
    3.
    发明授权
    형광체 및 이의 제조방법 有权
    磷光体及其制备方法

    公开(公告)号:KR101214234B1

    公开(公告)日:2012-12-20

    申请号:KR1020110012712

    申请日:2011-02-14

    CPC classification number: C09K11/7728 C09K11/0883 C09K11/7734

    Abstract: 본발명의일 실시예에따른형광체는, 하기의조성식(1)을갖는다: [조성식 1] SrSiAlON:Re여기서, x, y 및 z는각각 0.005 ≤ x ≤ 0.05, 0.05 ≤ y ≤ 0.5, 0.001 ≤ z ≤ 0.50이고, Re은희토류원소임. 따라서, 본발명의일 실시예에따른형광체에서는스트론튬의농도가 0.05 몰 ~ 0.5 몰인경우 525 nm ~ 537 nm의단파장을나타낼수 있다. 또한, 알루미늄의농도가높은경우에는바륨을 0.003 몰 ~ 0.125 몰범위로첨가하여 525 nm ~ 537 nm의단파장을나타낼수 있다. 또한, 알루미늄의농도가높은경우에는알루미늄전구체로서 AlN 뿐만아니라 AlO를첨가하여산소의농도를조절하여 525 nm ~ 537 nm의단파장을나타낼수 있다. 결국, 본발명의일 실시예에따른형광체는 525 nm ~ 537 nm의단파장을나타낼수 있기때문에, 색재현성및 연색지수가떨어지는것을방지할수 있다.

    형광체 및 이의 제조방법
    5.
    发明公开
    형광체 및 이의 제조방법 有权
    磷光体及其制备方法

    公开(公告)号:KR1020120092838A

    公开(公告)日:2012-08-22

    申请号:KR1020110012712

    申请日:2011-02-14

    CPC classification number: C09K11/7728 C09K11/0883 C09K11/7734

    Abstract: PURPOSE: A Sialon phosphor is provided to have a short wavelength of 525-537 nm, and to prevent degradation of color reproducibility and color index. CONSTITUTION: A Sialon phosphor comprises a compound in chemical formula 1: Sr_ySi_(6-z)Al_zO_zN_(8-z):Re_x. In chemical formula 1, x, y and z is respectively 0.005

    Abstract translation: 目的:提供Sialon荧光体,使其具有525-537nm的短波长,并防止颜色再现性和颜色指数的降低。 构成:Sialon荧光体包含化学式1中的化合物:Sr_ySi_(6-z)Al_zO_zN_(8-z):Re_x。 在化学式1中,x,y和z分别为0.005≤x≤0.05,0.05≤y≤0.5,0.001≤z≤0.50,Re为稀土元素。 稀土元素选自Eu和Ce。 荧光体的制造方法包括:通过混合锶前体,硅前体,铝前体和活性物质的前体产生混合物的步骤,以及在氮气氛下烧结该混合物的步骤。

    형광체, 형광체 제조방법 및 발광장치
    6.
    发明公开
    형광체, 형광체 제조방법 및 발광장치 审中-实审
    磷光体,包括其的磷光体和发光装置的制造方法

    公开(公告)号:KR1020130066167A

    公开(公告)日:2013-06-20

    申请号:KR1020110132881

    申请日:2011-12-12

    CPC classification number: C09K11/7792 H05B33/14

    Abstract: PURPOSE: A phosphor with excellent high temperature performance and reliability is provided to improve light emitting efficiency, high temperature performance, and reliability, thereby improving color rendering index, and color reproducibility. CONSTITUTION: A phosphor is represented by chemical formula: Eu_xM_yL_(3-x-y)Si_(6-z)Al_zN_(11-(z+y+z))O_(z+y+z). In the chemical formula, 0.00001

    Abstract translation: 目的:提供具有优异的高温性能和可靠性的荧光体,以提高发光效率,高温性能和可靠性,从而提高显色指数和色彩再现性。 构成:荧光体由化学式Eu_xM_yL_(3-x-y)Si_(6-z)Al_zN_(11-(z + y + z))O_(z + y + z)表示。 在化学式中,0.00001 <= x <= 2.9999,0.0001 <= y <= 2.99999,0 <= z <= 6.0; L是选自La,Y,Gd和Lu中的一种或多种元素; M是选自Ca,Sr,Ba和Mn中的一种或多种。 发光器件包括发射激发光的发光二极管; 以及通过吸收激发光而发出可见光的波长转换部。 波长转换部分包括磷光体。 (附图标记)(AA)比较例; (BB)示例

    형광체 및 이의 제조방법
    7.
    发明授权
    형광체 및 이의 제조방법 有权
    一种磷光体及其制备方法

    公开(公告)号:KR101214236B1

    公开(公告)日:2012-12-20

    申请号:KR1020100092636

    申请日:2010-09-20

    Abstract: 본발명의일 실시예에따른형광체는, 본발명의일 실시예에따른형광체는, 하기의조성식(1)을갖는다: [조성식 1] SiAlON:Re여기서, x, y 및 z는각각 0.018 ≤ x ≤ 0.3, 0.3 ≤ y ≤ 0.75, 0.42 ≤ z ≤ 1.0이고, Re은희토류원소임. 따라서, 본발명에서는알루미늄농도가 0.42 몰내지 1.0 몰인경우에도높은휘도를나타내며, 입도에서 D50 값이 5 내지 20 ㎛범위인사이알론형광체를제공한다. 또한, 본발명의일 실시예에따른형광체를제조하는방법에서는, 산소농도를조절함으로써우수한형광체결정성을확보하여휘도를향상시킬수 있다.

    불화물 형광체 제조방법, 백색 발광장치, 디스플레이 장치 및 조명장치
    9.
    发明公开
    불화물 형광체 제조방법, 백색 발광장치, 디스플레이 장치 및 조명장치 审中-实审
    制造荧光体磷光体,发光装置,显示装置和照明装置的方法

    公开(公告)号:KR1020160082381A

    公开(公告)日:2016-07-08

    申请号:KR1020140190518

    申请日:2014-12-26

    Abstract: 본발명의일 실시예는, M을함유한제1 원료물질과 Mn을함유한불화물이용해된불산용액을마련하는단계와, 상기불산용액에 A를함유한제2 원료물질을복수회로분할하여(dividedly in plural times) 투입하여조성식 AMF:Mn을만족하는불화물입자들을형성하는단계;를포함하며, 여기서, M은 Si, Ti, Zr, Hf, Ge 및 Sn로구성된그룹으로부터선택된적어도 1종이고, A는 Li, Na, K, Rb 및 Cs로구성된그룹으로부터선택된적어도 1종이며, A의조성비(x)는 2 ≤ x ≤ 3을만족하고, F의조성비(y)는 4 ≤ y ≤ 7을만족하는불화물형광체제조방법을제공한다. 또한, 불화물입자들을세정하는단계후에, 상기세정된불화물입자들을유기용매에투입하고초음파분해(sonification)를적용하여상기불화물입자들의표면의미분을제거하는단계를포함할수 있다.

    Abstract translation: 本发明涉及一种制备氟化物荧光体的方法,其包括以下步骤:提供氢氟酸溶液,其中含有M的第一起始材料和含有Mn 4+的氟化物溶解; 并将含有A的第二起始原料分别多次引入氢氟酸溶液中以形成满足组成式A_xMF_y:Mn ^ 4 +的氟化物粒子,其中M为选自Si,Ti,Zr中的至少一种 ,Hf,Ge和Sn; A是选自Li,Na,K,Rb和Cs中的至少一种; A的比(x)满足2 <= x <= 3; 并且F的比例(y)满足4≤y≤7。另外,在清洗氟化物粒子的步骤之后,该方法还可以包括将洗过的氟化物颗粒引入有机溶剂中,然后进行超声处理 ,以除去氟化物颗粒表面上的灰尘。

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