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    المؤلفون: , Lin, Sung-En

    المساهمون: 韋文誠, 臺灣大學:材料科學與工程學研究所

    وصف الملف: 11898835 bytes; application/pdf

    Relation: H. Zhou, W. Cai, L. Zhang, “Photoluminescence of Indium-Oxide Nanoparticles Dispersed within Pores of Mesoporous Silica,” Appl. Phys. Lett., Vol. 75, No. 4, 26 July (1999) Y. Li, Y. Bando, D. Golberg, “Single-Crystalline In2O3 Nanotubes Filled with In,” Adv. Mater., 15, No. 7-8, April 17 (2003). K. Soulantica, L. Erades, M. Sauvan, F. Senocq, A. Maisonnat, “Synthesis of Indium Oxide Nanoparticles from Indium Cyclopentadienyl Precursor and Their Application for Gas Sensing,” Adv. Funct. Mater, 13, No. 7, July (2003) S. Sato, “Photocatalytic Activities of Indium Oxide Powder Prepared from Indium Hydroxide,” J. Photochem. Photobio. A: Chem., 45, 361-367 (1988) L. Hong, E. Ruckenstein, “Conductive Coating Films Based on Low Density In2O3 Powders and Polymer Latexes,” J. Appl. Poly. Scien., Vol. 61, 901-909 (1996) C. Liang, G. Meng, Y. Lei, “Catalytic Growth of Semiconducting In2O3 Nanofibers,” Adv. Mater, 13, No. 17, September 3 (2001) F. Boschini, B. Robertz, A. Rulmont, R. Cloots, “Preparation of Nanosized Barium Zirconate Powder by Thermal Decomposition of Urea in an Aqueous Solution Containing Barium and Zirconium and by Calcination of the Precipitation,” J. Europ. Ceram. Soc., 23, 3035-3042 (2003) L. Wang, I. Sondi, E. Matijevic, “Preparation of Uniform Needle-like Aragonite Particles by Homogeneous Precipitation,” J. Colloid and Interface Science, 218, 545-553 (1999) K. C. Song, Y. Kang, “Preparation of High Surface Area Tin Oxide Powders by a Homogeneous Precipitation of Zinc Sulfide from Acidic Zinc Salt Solution,” Colloids and Surfaces A: Physic. Enging. Aspec., 151,505-512 (1999) A. Eshuis , G.R.A. van Elderen, C.A.J. Koning, “A descriptive model for the homogeneous precipitation of zinc sulfide from acidic zinc salt solutions,” Colloids and Surfaces A: Physicochemical and Engineering Aspects, 151, 505–512 (1999) J. Subrt, J. Bohacek, V. Stengl, T. Grygar, P. Bezdicka, “Uniform Particles with a Large Surface Area Formed by Hydrolysis of Fe2(SO4)3 with Urea,” Mater. Rese. Bull., 34 [6] 905–914 (1999) J. Li, T. Ikegami, Y. Wang, T. Mori, “10 mol% Gd2O3-Doped CeO2 Solid Solutions via Carbonate Coprecipitation: A Comparative Study,” J. Am. Ceram. Soc., 86 [6] 915-21 (2003) Y. Wang, T. Mori, J. Li, Y. Yajima, “Low-temperature Fabrication and Electrical Property of 10 mol% Sm2O3-doped CeO2 Ceramics,” Scien. Tech. Adv. Mate., 4, 229-238 (2003) X. C. Jiang, C. H. Yan, L.D. Sun Z. G. Wei, C. S. Liao, “Hydrothermal Homogeneous Urea Precipitation of Hezagonal YBO3:Eu3+ Nanocrystals with Improved Luminescent Properties,” Journal of Solid State Chemistry, 175, 245-251 (2003) C. G. A. Hill, “CRT Phosphors,” SID Seminar Lecture Notes, S-6.2, 1984 H. W. Leverens, “Excitation and Emission Phenomena in Phosphors,” Preparation and Characteristics of Solid Luminescent Materials, 149-181 (1948) R. C. Ropp, “Luminescence and the Solid State,” 138 Mountain Avenue, Warren, NJ 07060, U. S. A. 289-293 (1991) R. C. Ropp, “Luminescence and the Solid State,” 138 Mountain Avenue, Warren, NJ 07060, U. S. A. 242-243 (1991) G. Blasse and A. Bril, Philips Technical Rev. 31, 314 (1970) R. C. Ropp, “Luminescence and the Solid State,” 138 Mountain Avenue, Warren, NJ 07060, U. S. A. 287 (1991) L. E. Shea, J. McKittrick, and M. L. F. Phillips, J. Electrochem. Soc. 145, 3165 (1998) R. C. Ropp, “Luminescence and the Solid State,” 138 Mountain Avenue, Warren, NJ 07060, U. S. A. 343-345 (1991) http://www-viz.tamu.edu/courses/viza654/99fall/demos/cieimages/ciexy.jpg Matijevic, “Monodispersed Colloid: Art and Science,” Langmuir 2 12-20 (1986) Matijevic, “Preparation and Properties of Uniform Size Colloid,” Chem. Mater., 5 412-426 (1993) W. P. Hsu, L. Ronnquist, Matijevic, “Preparation and Porperties of Monodispersed Colloidal Particles of Lanthanide Compounds. 2. Cerium (IV),” Langmuir, 4 31 (1988) H. Ichinose, M. Taira, S. Furuta , H. Katsuki, “Anatase Sol Prepared from Peroxotitanium Complex Aqueous Solution Containing Niobium or Vanadium,” J. Am. Ceram. Soc., 86 [9] 1605-608 (2003) T. Sugimoto, K. Sakata, A. Muramatsu, “Formation Mechanism of Monodisperse Pseudocubic Particles α-Fe2O3 from Condensed Ferric Hydroxide Gel,” J. Colloid Interface Sic., 159 372-82 (1993) H. Itoh, T. Sugimoto, “Systematic Control of Size, Shape, Structure, and Magnetic Properties of Uniform Magnetite and Maghemite Particles,” J. Colloid. Interface Sci., 159 283-295 (2003) B. Djuricic, S. Pickering, D. Mcgarry, P. Glaude, P. Tambuyser, K. Schuster, “The Properties of Zirconia Powders Produced by Homogeneous Precipitation,” Ceramic International 21 195-206 (1995) L.Wang, I. Sondi, E. Matijevic, “Preparation of Uniform Needle-Like Argonite Particles by Homogeneous Precipitation,“ J. Colloid Interface Sci., 218, 545-553 (1993) A. C. Tas, P. J. Majewski, F. Aldinger, “Synthesis of Gallium Oxide Hydroxide Crystals in Aqueous Solution with or without Urea and Their Calcination Behavior,” J. Am. Ceram. Soc., 85 [6] 1421-29 (2002) T. Ko, D. Hwan, “Preparation of Nanocrystalline Lead Zireconate Powder by Homogeneous Precipitation Using Hydrogen Peroxide and Urea,” Materials Letters, 57, 2473-2479 (2003) F. Boschini, B. Robertz, A. Rulmont, R. Cloots, “Preparation of Nanosized Barium Zirconate Powder by Thermal Decomposition of Urea in an Aqueous Solution Containing Barium and Zirconium, and by Calcination of the Precipitate,”, J. Euro. Ceram. Soc., 23 3035-3042 (2003) Y. Wang, T. Mori, J.G. Li, Y. Yajima, “Low-Temperature Fabrication and Electrical Property of 10 mol% Sm2O3-Doped CeO2 Ceramic,“ Sci. Tech. Adv. Mater., 4, 229-238 (2003) Y. Wang, T. Mori, J.G. Li, Y. Yajima, “10 mol% Gd2O3-Doped CeO2 Solid Solution via Carbonate Coprecipitation: A Comparative Study,“ J. Am. Ceram. Soc., 86 [6], 915-21 (2003) A.Kundu, C. Upaddhyay, H.C. Verma, “Magnetic Properties of a Partially Inverted Zinc Ferrite Synthesized by a New Coprecipitation Technique Using Urea,” Physics Letters A, 311, 410-415 (2003) Stober, W.; Fink, A.; Bohn, E. J. Colloid Interface Sci., 1968, 26, 62 P. A. Buining, L. M. Liz-Marzan A. P. Philipse, “A Simple Preparation of Small, Smooth Silica Spheres in a Seed Alcosol for Stober Synthesis,” J. Colloid Interface Sci., 179, 318-321 (1996) R. Vacassy, R. J. Flatt, H. Hofmann, K. S. Choi, R. K. Singh, “Synthesis of Mircoporous Silica Spheres,” J. Colloid Interface Sci., 227, 302-315 (2000) Matijevic, E. “Uniform Inorganic Colloid Dispersions. Achievements and Challenges,” Langmuir, 10, 8-16 (1994) LaMer, Ind. Eng. Chem, 1952, 44, 1270. JCPDF # 33-1336 http://chsfpc5.chem.ncsu.edu/sf/ito/sld004.htm S. Avivi, Y. Mastai, A. Gedanken, “Sonohydrolysis of In3+ Ions: Formation of Needelike Particles of Indium Hydroxide”, Chem. Mater. 2000, 12, 1229-1233 JCPDF # 16-161 Paul A. Webb, C. Orr, “Analytical Methods in Fine Particle Technology,” Micromeritics Instrument Corporation, Norcross, GA USA. Chapter 3 (1997) J. I. Steinfeld, J. S. Francisco, W. L. Hase, “CHEMICAL KINETICS AND DYNAMICS, Second Edition,” Chapter 1, Prentice-Hall Inc., 6 (1999) W. H. R. Shaw, J. J. Bordeaux, “The Decomposition of Urea in Aqueous Media,” J. Chem. Soc. Vol. 77 4729 (1955) M. S. Lee, W. C. Choi, E. K. Kim, C. K. Kim, S. K. Min, “Characterization of the oxidized indium thin films with thermal oxidation,” Thin Solid Films, 279 1-3 (1996) D. Yu, S. H. Yu, S. Zhang, J. Zio, D. Wang, Y. Qian “Metastable Hexagonal In2O3 Nanofibers Templated from InOOH Nanofibers under Ambient Pressure,“ Adv. Funct. Mater., 13, No. 6 June (2003) X. C. Wu, J. M. Hong, Z. J. Han, Y. R. Tao, “Fabrication and Photoluminescence Characteristics of Single Crystalline In2O3 Nanowires,” Chem. Phys. Lett., 373 28-32 (2003) H. Zhou, W. Cai, L. Zhang “Photoluminescence of Indium-Oxide Nanoparticles Dispersed within Pores of Mesopous Silica,” Appl. Phys. Lett., Vol. 75, No. 4, 26 July (1999) W. S. Seo, “Preparation and Optical Properties of Highly Crystalline, Colloidal, and Size-Controlled Indium Oxide Nanoparticles,” Adv, Mater., 15, No. 10, MY 16 (2003) Y. Zhao, Z. Zhang, Z. Wu, H. Dang, “Synthesis and Characterization of Single-Crystalline In2O3 Nanocrystals via Solution Dispersion,“ Langmuir 20 27-29 (2004); en-US; http://ntur.lib.ntu.edu.tw/handle/246246/55335; http://ntur.lib.ntu.edu.tw/bitstream/246246/55335/1/ntu-93-R91527009-1.pdf