首页> 外国专利> FINE PARTICLE DISPERSION SOLUTION, METHOD FOR PRODUCING IT, AND METHOD FOR PRODUCING LNOX-LNX3 COMPLEX PARTICLE

FINE PARTICLE DISPERSION SOLUTION, METHOD FOR PRODUCING IT, AND METHOD FOR PRODUCING LNOX-LNX3 COMPLEX PARTICLE

机译:细颗粒分散溶液,其制备方法和LNOX-LNX3复杂颗粒的制备方法

摘要

PROBLEM TO BE SOLVED: To provide a fluorescent fine particle dispersion solution allowing efficient production of a dispersion solution wherein nanometer-size fine particles are dispersed without performing mechanical dispersing nor granule disintegrating processing, a method for producing the fine particle dispersion solution, and a method for producing LnOX-LnX3 complex particles.;SOLUTION: The fine particle dispersion solution, wherein LnOX (Ln is a rare earth element and X is halogen) particles with an average particle diameter of nanometer size are dispersed uniformly, can be used as an upconversion light-emission phosphor, a contrast medium, a sensitizer and the like and a fluorescent label and the like in a genetic diagnosis filed and the like. Since the fine particle dispersion solution can be produced by charging the LnOX-LnX3 complex particle as a precursor into a solvent, the dispersion solution can be obtained easily at low cost without performing mechanical dispersing nor granule disintegrating processing. The precursor also can be obtained easily by performing two-step heating treatment on a hydrate of a rare-earth halide.;COPYRIGHT: (C)2009,JPO&INPIT
机译:解决的问题:提供一种荧光微粒分散溶液,其能够有效地生产其中分散了纳米尺寸的微粒而无需进行机械分散或颗粒崩解处理的分散溶液,该微粒分散溶液的生产方法和方法用于制备LnOX-LnX 3 复合粒子。;溶液:将平均粒径为纳米级的LnOX(Ln为稀土元素,X为卤素)粒子分散在细颗粒分散液中均匀地,可以在遗传诊断领域等中用作上转换发光磷光体,造影剂,敏化剂等以及荧光标记等。由于可以通过将作为前体的LnOX-LnX 3 络合物颗粒加入溶剂中来制备细颗粒分散溶液,因此可以容易地以低成本容易地获得分散溶液,而无需进行机械分散或颗粒崩解处理。 。通过对稀土卤化物的水合物进行两步加热处理,也可以轻松获得前驱体。;版权所有:(C)2009,JPO&INPIT

著录项

  • 公开/公告号JP2009138081A

    专利类型

  • 公开/公告日2009-06-25

    原文格式PDF

  • 申请/专利权人 TOKYO UNIV OF SCIENCE;

    申请/专利号JP20070315138

  • 发明设计人 KONISHI TOMOYA;SOGA KOHEI;

    申请日2007-12-05

  • 分类号C09K11/08;C09K11/85;

  • 国家 JP

  • 入库时间 2022-08-21 19:44:40

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