CAS: 12036-41-8; Terbium Oxide

该化合物是一种稀有的土质化合物,其热和化学稳定性高,通常用于磷,催化剂和光学材料,具有极佳的光亮特性,在绿色排放的磷中可用作展示和照明用途,其价值在绿色排放的磷中具有价值,其高纯度和连续的粒子大小确保了专门陶瓷和玻璃配方的可靠性能.氧化还用作固态装置的阴道,增强磁性和电子性能.在极端条件下,其稳定性适合于高温过程.可用粉末形式处理,在受控制的条件下保持其质量和活性,用于先进的材料科学应用.

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    专利信息


    专利号:US-12195343-B2
    优先权日:2019-10-15
    标 题 :Synthesis of janus nanomaterials
    发明人:WANG WEI
    权利人:SAUDI ARABIAN OIL CO
    摘要:Synthesizing Janus nanoparticles including forming a lamellar phase having water layers, organic layers, and a surfactant, and reacting chemical precursors in the lamellar phase to form the Janus nanoparticles at interfaces of the water layers with the organic layers.

    专利号:US-7531466-B2
    优先权日:2006-07-26
    标题:Metal organic deposition precursor solution synthesis and terbium-doped SiO2 thin film deposition
    发明人:ZHUANG WEI-WEI; ONO YOSHI; LI TINGKAI
    权利人:SHARP LAB OF AMERICA INC
    摘要:A method of making a doped silicon oxide thin film using a doped silicon oxide precursor solution includes mixing a silicon source in an organic acid and adding 2-methoxyethyl ether to the silicon source and organic acid to from a preliminary precursor solution. The resultant solution is heated, stirred and filtered. A doping impurity is dissolved in 2-methoxyethanol to from a doped source solution, and the resultant solution mixed with the previously described resultant solution to from a doped silicon oxide precursor solution. A doped silicon oxide thin film if formed on a wafer by spin coating. The thin film and the wafer are baked at progressively increasing temperatures and the thin film and the wafer are annealed.

    专利号:US-9359396-B2
    优先权日:2011-07-12
    标题:Material for supported synthesis and method for growing oligonucleotides or peptides
    发明人:CHAIX CAROLE; DE CROZALS GABRIEL; FARRE CAROLE
    权利人:CHAIX CAROLE; DE CROZALS GABRIEL; FARRE CAROLE; UNIV CLAUDE BERNARD LYON; CENTRE NAT RECH SCIENT
    摘要:The invention concerns a material composed of a porous support on which functionalized nanoparticles are grafted by covalent bonding, characterized in that at least part of the nanoparticles grafted by covalent bonding is housed inside surface pores of the support, and in that the support is silica-based and is in the form of porous particles of heterogeneous shape and size, the size of the particles being larger than 1 μm and preferably within the range of 5 to 200 μm. n The invention further concerns a growth method for oligonucleotides or peptides characterized in that growth is performed on a material formed of a porous support on which functionalized nanoparticles are grafted by covalent bonding, characterized in that at least a part of the nanoparticles grafted by covalent bonding is housed inside surface pores of the support.

    专利号:US-2011104052-A1
    优先权日:2007-12-03
    标 题 :Methods of synthesis and use of chemospheres
    发明人:BARNETT BRADLEY POWERS; GESCHWIND JEFFREY
    权利人:UNIV JOHNS HOPKINS
    摘要:The present invention provides, in general, compositions comprising a hydrogel and an agent, for example a therapeutic agent or an imaging agent, for locoregional delivery. In certain preferred embodiments of the invention, the hydrogel compositions are detectable by Magnetic Responance and CT Scan and are used for locoregional delivery of therapeutic agents, for example chemotherapeutic agents. The invention also features polymer matrix compositions comprising nanoparticles that can be loaded after polymerization with bioactive agents, for example a diagnostic agent or therapeutic agent.

    专利号:US-11572282-B2
    优先权日:2019-10-15
    标题 :Synthesis of Janus nanomaterials

    专利号:WO-9806793-A1
    优先权日:1996-08-08
    标 题:Process for the preparaiton of aluminate-base phosphor
    发明人:MORIYAMA HIROFUMI; MORIYAMA TOMOFUMI; KOBAYASHI YUKIE
    权利人:TOKYO KAGAKU KENKYUSHO KK; MORIYAMA HIROFUMI; MORIYAMA TOMOFUMI; KOBAYASHI YUKIE
    摘要:A process by which a three-wavelength or photostimulable aluminate-base phosphor that is easy of pulverization and excellent in luminescence characteristics because of its lowered content of fine particles can be prepared in a high yield, wherein α-alumina powder having a primary particle diameter of 0.3 to 30 νm and being substantially free from any fracture surface is used as the starting alumina in the synthesis.

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