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    • 1. 发明专利
    • 光學材料、非結晶材料與相關材料及其製備方法 OPTICAL MATERIALS, AMORPHOUS MATERIALS AS WELL AS RELATED MATERIALS, AND PRODUCTION METHODS THEREOF
    • 光学材料、非结晶材料与相关材料及其制备方法 OPTICAL MATERIALS, AMORPHOUS MATERIALS AS WELL AS RELATED MATERIALS, AND PRODUCTION METHODS THEREOF
    • TWI318693B
    • 2009-12-21
    • TW091118537
    • 2002-08-16
    • 尼歐光量子學公司
    • 奎格R. 紅恩皮爾J. 迪麥斯卡瑞克里斯汀C. 荷奈克班哲明 夏隆納-吉爾赫曼A. 洛沛茲湘辛 畢朗諾J. 莫索威廉E. 麥高文詹姆士T. 嘉納珊潔 庫瑪詹姆士A. 吉利安文斯 礬艾利克 尤瑞德西夫庫瑪 奇路佛魯傑西 裘
    • G02B
    • B82Y30/00C01B13/20C01B19/004C01F17/0043C01G1/00C01G17/00C01G23/00C01P2002/02C01P2002/50C01P2004/50C01P2004/62C01P2004/64C01P2004/84C01P2006/60C01P2006/80C03B19/106C03B19/1415C03B2207/34C03C3/062C03C3/078C03C3/095C03C3/097C03C3/122C03C3/17C03C3/253C03C12/00C09K11/7706Y02P40/57Y10T428/25Y10T428/256Y10T428/2949Y10T428/2982Y10T428/2991Y10T428/31609
    • 本發明根據改變合成物(由種類繁多的金屬以及/或類金屬元素所構成)以及對應合成物的能力以敘述奈米大小的粒子、粒子塗佈/粒子陣列以及對應的固化材料。尤其是,將已改良過的奈米大小粒子與塗佈(由奈米大小粒子所形成)之形式敘述金屬氧化物與金屬/類金屬合成物。合成物包含稀土族金屬以及具有所說明稀土族金屬的摻雜物/添加物。運用此處所說明的方法可形成由種類繁多的主合成物與摻雜物/添加物所構成的複雜合成物。粒子塗佈可取自範圍來自所用主粒子集合物的粒子陣列形狀來結合主粒子網路以形成反應出奈米大小般主粒子的通道。在此將搭配某些相關的光學裝置一起敘述合適的光學應用材料。 Nanoscale particles, particle coatings/particle arrays and corresponding consolidated materials are described based on an ability to vary the composition involving a wide range of metal and/or metalloid elements and corresponding compositions. In particular, metalloid oxides and metal-metalloid compositions are described in the form of improved nanoscale particles and coatings formed from the nanoscale particles. Compositions comprising rare earth metals and dopants/additives with rare earth metals are described. complex compositions with a range of host compositions and dopants/additives can be formed using the approaches described herein. The particle coating can take the form of particle arrays that range from collections of disbursable primary particles to fused networks of primary particles forming channels that reflect the nanoscale of the primary particles. Suitable materials for optical applications are described along with some optical devices of interest.
    • 本发明根据改变合成物(由种类繁多的金属以及/或类金属元素所构成)以及对应合成物的能力以叙述奈米大小的粒子、粒子涂布/粒子数组以及对应的固化材料。尤其是,将已改良过的奈米大小粒子与涂布(由奈米大小粒子所形成)之形式叙述金属氧化物与金属/类金属合成物。合成物包含稀土族金属以及具有所说明稀土族金属的掺杂物/添加物。运用此处所说明的方法可形成由种类繁多的主合成物与掺杂物/添加物所构成的复杂合成物。粒子涂布可取自范围来自所用主粒子集合物的粒子数组形状来结合主粒子网络以形成反应出奈米大小般主粒子的信道。在此将搭配某些相关的光学设备一起叙述合适的光学应用材料。 Nanoscale particles, particle coatings/particle arrays and corresponding consolidated materials are described based on an ability to vary the composition involving a wide range of metal and/or metalloid elements and corresponding compositions. In particular, metalloid oxides and metal-metalloid compositions are described in the form of improved nanoscale particles and coatings formed from the nanoscale particles. Compositions comprising rare earth metals and dopants/additives with rare earth metals are described. complex compositions with a range of host compositions and dopants/additives can be formed using the approaches described herein. The particle coating can take the form of particle arrays that range from collections of disbursable primary particles to fused networks of primary particles forming channels that reflect the nanoscale of the primary particles. Suitable materials for optical applications are described along with some optical devices of interest.