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    • 5. 发明公开
    • VERFAHREN ZUM HERSTELLEN EINER BESCHICHTUNG AUF DER OBERFLÄCHE EINES PARTIKELS ODER WERKSTOFFS UND ZUGEHÖRIGES PRODUKT
    • 制造方法涂覆在颗粒或材料和相关联的产品的表面
    • EP1608720A1
    • 2005-12-28
    • EP04723505.6
    • 2004-03-26
    • Osram Opto Semiconductors GmbH
    • GRAMPEIX, HelenKOBUSCH, ManfredLIEPOLD, Ute
    • C09K11/08
    • C09K11/08H01L33/502H01L2933/0041Y10T428/2991
    • The invention relates to a method for producing at least one coating (3) on at least one section (4) of the surface of a body (2) by the chemical conversion of at least one constituent of the body into at least one constituent of the coating. The method is characterised in that a chemical, non-metallic compound forms the constituent of the body. The method can be described as an 'intrinsic' coating method, as the coating process is not carried out by the external application of material to the surface section, but by the material conversion of the constituent of the body. The method permits the production of a body comprising at least one surface section with at least one coating that has been formed by the chemical conversion of at least one constituent of the body into at least one constituent of the coating. The body is characterised in that the constituent of the body is a chemical, non-metallic compound, for example, a chloride silicate, which is used in the form of luminescent particles as a luminescent substance in a luminescent body (7) of a light-emitting diode (LED). The coating protects the luminescent substance against decomposition by hydration or hydrolysis. The luminescent substance is characterised by improved long-term stability in comparison with similar substances in prior art.
    • 本发明涉及一种用于在至少一个部分产生至少一个涂层(3)(4)的主体的表面(2)通过化学转化的主体的至少一种成分的成中的至少一种成分 该涂层。 该方法DASS化学,非金属化合物形成本体的构成。 该方法可以被描述为“固有”涂层方法中,作为涂布方法不受材料的外部应用到所述表面部分进行的,而是由主体的构成的原料转化。 该方法允许生产一个主体,其包括至少一个表面部分具有至少一个涂层的并已形成由主体中的至少一种成分的化学转化成该涂层的至少一种成分。 该机构是DASS主体的构成是,其在发光粒子的形式使用作为发光物质在发光体上的化学,非金属化合物,例如,氯化物硅酸盐,全部(7)的光的 -emitting二极管(LED)。 该涂层可保护由水合或水解针对分解发光物质。 发光物质是通过改进的长期稳定性与现有技术中类似的物质比较特征的。