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1.
Hydrothermal Method and Microemulsion Method Synthesis of Inorganic Luminescent Materials;
水热法及微乳液法制备无机发光材料
2.
Study on Sol-gel Prepared Inorganic and Inorganic-organic Hybrid Photoluminescence Material;
溶胶—凝胶法制备无机及有机/无机杂化光致发光材料的研究
3.
Hydrothermal Synthesis of Inorganic Semiconductor Nanomaterials and Luminescent Rare Earth Nanomaterial;
水热法合成无机半导体纳米材料及其掺杂稀土发光纳米材料
4.
Preparation and Investigation of Near-infrared Luminescence Properties of Organic-inorganic Hybrid Materials for Optical Amplifiers;
光放大用有机—无机杂化材料的合成与近红外发光特性研究
5.
Study on Preparation and Near-Infrared Luminescent Properties of Inorganic Phosphors Doped Rare-earth Ions
稀土掺杂无机近红外发光材料的制备及发光性能研究
6.
Absorption Spectrum Application in Organic Luminescent Material Research and Development;
吸收光谱在有机发光材料研发材料中的应用
7.
Preparation of Organic/Inorganic Nanocomposites by UV Photopolymerization;
UV光聚合制备有机/无机纳米复合材料
8.
Preparation of Organic/Inorganic Nanocomposies by UV Photopolymerization
UV光聚合制备有机—无机纳米复合材料
9.
Study on Inorganic/Organic Light Amplification Hybrid Nano-Materials
无机/有机光放大纳米杂化材料的研究
10.
Design, Synthesis, Characterization and Performance of Catalytic and Luminescent Inorganic-organic Mesoporous Materials;
催化及发光有机—无机杂化介孔材料的设计、合成、表征和性能研究
11.
The Preparation Inorganic Matrix/Rare Earth Organic Hybrid Luminescent Material by Sol-Gel Method;
溶胶-凝胶法制备无机基质/稀土 有机杂化发光材料
12.
Synthesis and Characterization of Nano Hybird Organic-Inorganic Light-Emitting Diodes;
有机—无机杂化纳米复合发光材料的合成与性能研究
13.
Finally, the development prospect of the inorganic materials used in blue-ray recording was previewed.
最后,对用于蓝光可录存储的无机材料今后的发展前景进行了展望。
14.
Studies on the Preparation and Near-Infrared Luminescence Properties of Inorganic Phosphors Doped Rare-earth Ions;
稀土掺杂无机近红外发光材料的制备与性能研究
15.
The Design and Construction of Rare Earth/Inorganic/Polymeric Luminescence Materials Based Molecular Bridge;
稀土/无机/聚合物发光材料体系的分子基定向设计与组装
16.
Vapor-phase Synthesis, Characterization and Photoluminescence of Quasi-one-dimensional Inorganic Nanomaterials;
准一维无机纳米材料的气相合成、结构表征和发光性能
17.
The advantages of organic materials over inorganic materials are high fluorescent efficiency, wide selection of colors and the easiness in the fabrication of large films.
与无机物相比,有机发光材料具有高荧光效率、色的广泛选择性及易成膜性。
18.
Research and Application of Organic/Inorganic Hybrid EO Material
有机/无机杂化型电光材料的研究与应用