Фотохимический синтез и исследование свойств наночастиц меди, серебра и золота на модифицированной полибутоксититаном поверхности кварца
Диссертация
Актуальность работы. Материалы, состоящие из пленок диоксида титана и наночастиц металла, с недавнего времени стали предметом пристального внимания исследователей. Интерес к материалам подобного рода вызван возможностью их применения в таких областях как электроника, оптика, химическая промышленность и медицина. Достоинством данных материалов является то, что, благодаря адгезии пленок диоксида… Читать ещё >
Список литературы
- Wang Ch., Deng Zh.-X., Li Y. The Synthesis of Nanocrystalline Anatase and Rutile Titania in Mixed Organic Media // Inorg. Chem., 2001, Vol. 40, N. 20, P. 5210−5214.
- Lin H.-M., Keng Ch.-H., Tung Ch.-Y. Gas-Sensing Properties Of Nanocrystalline Ti02 //Nanostruct. Mater., 1997, Vol. 9, N. 1−8, P. 747−750.
- Doeswijk L. M., de Moor H. H. C., Blank D. H. A. Passivating Ti02 Coatings for Silicon Solar Cells by Pulsed Laser Deposition // Appl. Phys. A, 1999, Vol. 69, Suppl. 1, P. 409−411.
- Parkin I. P., Palgrave R. G. Self-Cleaning Coatings // J. Mater. Chem., 2005, Vol. 15, N. 17, P. 1689−1695.
- Fujishima A., Honda K. Electrochemical Photolysis of Water at a Semiconductor Electrode //Nature, 1972, Vol. 238, N. 7, P. 37−38.
- Yu J., Xiong J., Cheng В., Liu S. Fabrication and Characterization of Ag-Ti02 Multiphase Nanocomposite Thin Films with Enhanced Photocatalytic Activity // Appl. Catal. B: Envir., 2005, Vol. 60, N. 3−4, P. 211−221.
- Arabatzis I. M., Stergiopoulos Т., Bernard M. C. Silver-Modified Titanium Dioxide Thin Films for Efficient Photodegradation of Methyl Orange // Appl. Catal. B: Envir., 2003, Vol. 42, N. 2, P. 187−201.
- Xu M.-W., Bao S.-J., Zhang X.-G. Enhanced Photocatalytic Activity of Magnetic Ti02 Photocatalyst by Silver Deposition // Mater. Lett., 2005, Vol. 59, N. 17, P. 2194−2198.
- Mo Sh.-D., Ching W. Y. Electronic and Optical Properties of Three Phases of Titanium Dioxide: Rutile, Anatase, and Brookite // Phys. Rev. B, 1995, Vol. 51, N. 19, P. 13 023−13 032.
- Addamo M., Bellardita M., Di Paola A., Palmisano L. Preparation and Photoactivity of Nanostructured Anatase, Rutile, and Brookite Ti02 Thin Films // Chem. Commun, 2006, N. 47, P. 4943−4945.
- Sung Y.-M., Lee J.-K., Chae W.-S. Controlled Crystallization of Nanoporous and Core/Shell Structure Titania Photocatalyst Particles // Crystal Growth & Design, 2006, Vol. 6, N. 4, P. 805−808.
- Zhai H.-J., Wang L.-Sh. Probing the Electronic Structure and Band Gap Evolution of Titanium Oxide Clusters (Ti02)"" {n = 1—10) Using Photoelectron Spectroscopy // J. Am. Chem. Soc. 2007, Vol. 129, N. 10, P. 3022−3026.
- Mardare D., Tasca M., Delibas M., Rusu G. I. On the Structural Properties and Optical Transmittance of Ti02 R.F. Sputtered Thin Films // Appl. Surf. Sci., 2000, Vol. 156, N. 1−4, P. 200−206.
- Suzuki S. Internal Stress and Adhesion of thin Films Sputtered onto Glass by an In-Line Sputtering System // Thin Solid Films, 1999, Vol. 351, N. 1−2, P. 194−197.
- Lee W. G., Woo S. I., Kim J. C., Choi S. H. Preparation and Properties of Amorphous Ti02 Thin Films by Plasma Enhanced Chemical Vapor Deposition // Thin Solid Films. 1994, Vol. 237, N. 1−2, P. 105−111.
- Ding X.-Z., Zhang F.-M., Wang H.-M., Chen L.-Z. Reactive Ion Beam Assisted Deposition of a Titanium Dioxide Film on a Transparent Polyester Sheet // Thin Solid Films, 2000, Vol. 368, N. 2, P. 257−260.
- Kim E. K., Son M. H., Min S. K., Han Y. K. Postgrowth Annealing Effects of Ti02 Thin Films Grown on InP Substrate at Low-temperature by Metal-organic Chemical Vapor Deposition // J. Appl. Phys., 1996, Vol. 79, N. 8, P. 4459−4461.
- Halary E., Benvenuti G., Wagner F., Hoffmann P. Light Induced Chemical Vapor Deposition of Titanium Oxide Thin Films at Room Temperature // Appl. Surf. Sci., 2000, Vol. 154−155, P. 146−151.
- Escobar-Alarcon L., Haro-Poniatowski E., Camacho-Lopez M. A., Fernandez-Guasti M. Structural Characterization of Ti02 Thin Films Obtained by Pulsed Laser Deposition // Appl. Surf. Sci., 1999, Vol. 137, N. 1−4, P. 3844.
- Bhattacharyya D., Sahoo N. K., Thakur S. Spectroscopic Ellipsometry of Ti02 Layers Prepared by Ion-Assisted Electron-Beam Evaporation // Thin Solid Films, 2000, Vol. 360, N. 1−2, P. 96−102.
- Sammelselg V., Rosental A., Tarre A., Niinisto L. Ti02 Thin Films by Atomic Layer Deposition: a Case of Uneven Growth at Low Temperature // Appl. Surf. Sci., 1998, Vol. 134, N. 1−4, P. 78−86.
- Battiston G. A., Gerbasi R., Gregori A., Porchia M. PECVD of Amorphous Ti02 Thin Films: Effect of Growth Temperature and Plasma Gas Composition // Thin Solid Films. 2000, VoL371, N. 1−2, P. 126−131.
- Ishikawa Y., Honda H., Sugahara Y. Preparation of Titania from Tetrakis (diethylamino)titanium via Hydrolysis // J. Sol-Gel Sci. Technol., 2000, Vol. 19, N. 1−3, P. 365−369.
- Yu K., Zhao J., Zhao X., Ding X. Self-Assembly and Oriented Organization of Shape-Controlled Nanocrystalline Ti02 // Mater. Lett., 2005, Vol. 59, N. 21, P. 2676−2679.
- Jamting A.K., Bell J. M., Swain M. V., Wielunski L. S. Measurement of the Micro Mechanical Properties of Sol-gel Ti02 Films // Thin Solid Films, 1998, Vol. 332, N. 1−2, P. 189−194.
- Lin H., Kozuka H., Yoko T. Preparation of Ti02 Films on Self-Assembled Monolayers by Sol-Gel Method // Thin Solid Films, 1998, Vol. 315, N. 1−2, P. 111−117.
- Nishide T., Mizukami F. Effect of Ligands on Crystal Structures and Optical Properties of Ti02 Prepared by Sol-gel Processes // Thin Solid Films, 1999, Vol. 353, N. 1−2, P. 67−71.
- Natarajan C., Fukunaga N., Nogami G. Titanium Dioxide Thin Film Deposited by Spray Pyrolysis of Aqueous Solution // Thin Solid Films, 1998, Vol. 322, N. 1−2, P. 6−8.
- Natarajan C., Nogami G. Cathodic Electrodeposition of Nanocrystalline Titanium Dioxide Thin Films // J. Electrochem. Soc. 1996, Vol. 143, N. 5, P. 1547−1550.
- Oswald M., Hessel V., Riedel R. Formation of Ultra-thin Ceramic Ti02 Films by the Langmuir-Blodgett Technique a Two-Dimensional Sol-Gel Process at the Air-Water Interface // Thin Solid Films, 1999, Vol. 339, N. 1−2, P. 284 289.
- Choi W., Termin A., Hoffman M. R. The Role of Metal Ion Dopants in Quantum-Sized Ti02: Correlation between Photoreactivity and Charge Carrier Recombination Dynamics // J. Phys. Chem., 1994, Vol. 98, N. 51, P. 1 366 913 679.
- Ghosh H. N., Adhikari S. Trap State Emission from Ti02 Nanoparticles in Microemulsion Solutions //Langmuir, 2001, Vol. 17, N. 13, P. 4129−4130.
- Martin S. T., Morrison C. L., Hoffman M. R. Photochemical Mechanism of Size-Quantized Vanadium-Doped Ti02 Particles // J. Phys. Chem., 1994, Vol. 98, N. 51, P. 13 695−13 704.
- Martini I., Hodak J. H., Hartland G. V. Dynamics of Semiconductor-to-Dye Electron Transfer for Anthracene Dyes Bound to Different Sized ТЮ2 Particles // J. Phys. Chem. B, 1999, Vol. 103, N. 43, P. 9104−9111.
- Wu X.-M., Wang L., Tan Z.-Ch., Li G.-H., Qu S.-Sh. Preparation, Characterization, and Low-Temperature Heat Capacities of Nanocrystalline Ti02 Ultrafine Powder // J. Solid State Chem. 2001, Vol. 156, N. 1, P. 220 224.
- Safrany A., Gao R., Rabani J. Optical Properties and Reactions of Radiation Induced ТЮ2 Electrons in Aqueous Colloid Solutions // J. Phys. Chem. B, 2000, Vol. 104, N. 24, P. 5848−5853.
- Su С., Hong B.-Y., Tseng C.-M. Sol-Gel Preparation and Photocatalysis of Titanium Dioxide // Catalysis Today, 2004, Vol. 96, N. 3, P. 119−126.
- Wu J. C. S., Tseng I.-H., Chang W.-Ch. Synthesis of Titania-Supported Copper Nanoparticles via Refined Alkoxide Sol-Gel Process // J. Nanopart. Res., 2001, Vol. 3, N. 2−3, P. 113−118.
- Chen X., Mao S. S. Titanium Dioxide Nanomaterials: Synthesis, Properties, ' Modifications, and Applications // Chem. Rev., 2007, Vol. 107, N. 7, P. 28 912 959.
- Суйковская H. В. Химические методы получения тонких прозрачных пленок. Ленинград: Химия, 1971. 200 с.
- Cayuela J., Bounor-Legare V., Cassagnau P., Michel A. Ring-Opening Polymerization of e-Caprolactone Initiated with Titanium я-Propoxide or Titanium Phenoxide // Macromolecules, 2006, Vol. 39, N. 4, P. 1338−1346.
- Rampaul A., Parkin I. P. Titania and Tungsten Doped Titania Thin Films on Glass: Active Photocatalysts // Polyhedron, 2003, Vol. 22, N. 1, P. 35−44.
- Park J.-K., Myoung J.-J., Kyong J.-B., Kim H.-K. Reaction Mechanism for the Hydrolysis of Titanium Alkoxides // Bull. Korean Chem. Soc., 2003, Vol. 24, N. 5, P. 671−673.
- Ireland J. C., Klostermann P., Rice E. W. Inactivation of Escherichia coli by Titanium Dioxide Photocatalytic Oxidation // Appl. and Envir. Microbiol., 1993, Vol. 59, N. 5, P. 1668−1670.
- Benedix R., Dehn F., Quaas J., Orgass M. Application of Titanium Dioxide Photocatalysis to Create Self-Cleaning Building Materials // Lacer, 2000, N. 5, P. 157−167.
- Beydoun D., Amal R., Low G., McEvoy S. Role of Nanoparticles in Photocatalysis // J. Nanopart. Res., 1999, Vol. 1, N. 4, P. 439−458.
- Hoffmann M. R., Martin S. T., Choi W., Bahnemann D. W. Environmental Applications of Semiconductor Photocatalysis // Chem. Rev., 1995, Vol. 95, N. 1, P. 69−96.
- Siemon U., Bahnemann D., Testa J. J. Heterogeneous Photocatalytic Reactions Comparing Ti02 and Pt/Ti02 // J. Photochem. Photobiol. A, 2002, Vol. 148, N. 1−3, P. 247−255.
- Sunada K., Kikuchi Y., Hashimoto K., Fujishima A. Bactericidal and Detoxification Effects of Ti02 Thin Film Photocatalysts // Environ. Sci. Technol. 1998, Vol. 32, N. 5, P. 726−728.
- Cai R., Hashimoto K., Kubota Y., Fujishima A. Increment of Photocatalytic Killing of Cancer Cells Using Ti02 with the Aid of Superoxide Dismutase // Chem. Lett. 1992, Vol. 21, N. 3, P. 427−430.
- Wang Ch.-Ch., Zhang Z., Ying J. Y. Photocatalytic Decomposition of Halogenated Organics over Nanocrystalline Titania // Nanostr. Mater., 1997, Vol. 9, N. 1−8, P. 583−586.
- Ramanathan K., Avnir D., Modestov A. Sol-Gel Derived Ormosil-Exfoliated Graphite-Ti02 Composite Floating Catalyst: Photodeposition of Copper // Chem. Mater., 1997, Vol. 9, N. 11, P. 2533−2540.
- Meng S., Zhang Z. Y., Kaxiras E. Tuning Solid Surfaces from Hydrophobic to Superhydrophilic by Submonolayer Surface Modification // Phys. Rev. Lett., 2006, Vol. 97, N. 3, P. 361 071−361 074.
- Kudo T., Kudo Y., Hasegawa A. Enhancement of the Photocatalytic Reactivity of Unique Rectangular Column-Structured Ti02 Photocatalysts by Incorporating Nanosized Metal Particles // Chem. Lett., 2006, Vol. 35, N. 12, P. 1390−1391.
- Orlov A., Jefferson D. A., Macleod N., Lambert R. M. Photocatalytic Properties of Ti02 Modified with Gold Nanoparticles in the Degradation of 4-Chlorophenol in Aqueous Solution // Catal. Lett. 2004, Vol. 92, N. 1−2, P. 4147.
- Hufschmidt D., Bahnemann D., Testa J. J. Enhancement of the Photocatalytic Activity of Various Ti02 Materials by Platinisation // J. Photochem. Photobiol. A: Chem., 2002, Vol. 148, N. 1−3, P. 223−231.
- Li F. B., Li X. Z. Photocatalytic Properties of Gold/Gold Ion-Modified Titanium Dioxide for Wastewater Treatment // Appl. Catal. A, 2002, Vol. 228, N. 1−2, P. 15−27.
- Sakthivel S., Shankar M. V., Palanichamy M. Enhancement of Photocatalytic Activity by Metal Deposition: Characterisation and Photonic Efficiency of Pt, Au and Pd Deposited on Ti02 Catalyst // Water. Res., 2004, Vol. 38, N. 13, P. 3001−3008.
- Stathatos E., Petrova T., Lianos P. Study of the Efficiency of Visible-Light Photocatalytic Degradation of Basic Blue Adsorbed on Pure and Doped Mesoporous Titania Films // Langmuir, 2001, Vol. 17, N. 16, P. 5025−5030.
- Roucoux A., Schlz J., Patin H. Reduced Transition Metal Colloids: A Novel Family of Reusable Catalysts? // Chem. Rev. 2002, Vol. 102, N. 10, P. 37 573 778.
- Morones J. R., Elechiguerra J. L., Camacho A., Holt K. The Bactericidal Effect of Silver Nanoparticles // Nanotechnology, 2005, Vol. 16, N. 10, P. 2346−2353.
- Tao A., Kim F., Hess C., Goldberger J. Langmuir-Blodgett Silver Nanowire Monolayers for Molecular Sensing Using Surface-Enhanced Raman Spectroscopy // Nano Lett., 2003, Vol. 3, N. 9, P. 1229−1233.
- Geddes C. D, Parfenov A. Luminescent Blinking from Silver Nanostructures // J. Phys. Chem. B, 2003, Vol. 107, N. 37, P. 9989−9993.
- Bartek M., Correia J.H., Wolffenbuttel R.F. Silver-Based Reflective Coatings for Micromachined Optical Filters // J. Micromech. Microeng., 1999, Vol. 9, N. 2, P. 162−165.
- Schwartzberg A. M., Zhang J. Z. Novel Optical Properties and Emerging Applications of Metal Nanostructures // J. Phys. Chem. C, 2008, Vol. 112, N. 28, P. 10 323−10 337.
- Jana S., Salehi-Khojin A., Zhong W.-H. Enhancement of Fluid Thermal Conductivity by the Addition of Single and Hybrid Nano-Additives // Thermochimica Acta, 2007, Vol. 462, N. 1−2, P. 45−55.
- Zamborini F. P., Leopold M. C., Hicks J. F. Electron Hopping Conductivity and Vapor Sensing Properties of Flexible Network Polymer Films of Metal Nanoparticles // J. Am. Chem. Soc., 2002, Vol. 124, N. 30, P. 8958−8964.
- Guo Sh., Wang E. Synthesis and Electrochemical Applications of Gold Nanoparticles // Anal. Chim. Acta, 2007, Vol. 598, N. 2, P. 181−192.
- Wu, J. C. S.- Yeh, C.-Y. Sol-Gel-Derived Photosensitive Ti02 and Cu/Ti02 Using Homogeneous Hydrolysis Technique // J. Mater. Res., 2001, Vol. 16, N. 2, P. 615−620.
- Ohko Y., Tatsuma T., Fujii T., Naoi K., Niwa C. Multicolour Photochromism of Ti02 Films Loaded with Silver Nanoparticles // Nat. Mater., 2003, Vol. 2, N. 1, P. 29−31.
- Bamwenda G. R., Tsubota S., Nakamura T., Haruta M. The Influence of the Preparation Methods on the Catalytic Activity of Platinum and Gold Supported on Ti02 for CO Oxidation// Catal. Lett., 1997, Vol. 44, N. 1−2, P. 83−87.
- Subramanian V., Wolf E. E., Kamat P. V. Influence of Metal/Metal Ion Concentration on the Photocatalytic Activity of Ti02-Au Composite Nanoparticles // Langmuir, 2003, Vol. 19, N. 2, P. 469−474.
- Li X. Z., He C., Graham N., Xiong Y. Photoelectrocatalytic Degradation of Bisphenol A in Aqueous Solution Using a Au-Ti02/IT0 Film // J. Appl. Electrochem., 2005, Vol. 35, N. 7−8, P. 741−750.
- Zhao G., Kozuka H., Yoko T. Sol-Gel Preparation and Photoelectrochemical Properties of Ti02 Films Containing Au and Ag Metal Particles // Thin Solid Films, 1996, Vol. 277, N. 1−2, P. 147−154.
- Raveendran P., Fu J., Wallen S. Completely «Green» Synthesis and Stabilization of Metal Nanoparticles // J. Am. Chem. Soc., 2003, Vol. 125, N. 46, P. 13 940−13 941.
- Hambrock J., Becker R., Birkner A. A Non-Aqueous Organometallic Route to Highly Monodispersed Copper Nanoparticles Using Cu (OCH (Me)CH2NMe2)2. // Chem. Commun, 2002, N. 1, P. 68−69.
- Okitsu K., Bandow H., Maeda Y. Sonochemical Preparation of Ultrafme Palladium Particles // Chem. Mater., 1996, Vol. 8, N. 2, P. 315−317.
- Haas I., Shanmugam S., Gedanken A. Pulsed Sonoelectrochemical Synthesis of Size-Controlled Copper Nanoparticles Stabilized by Polyvinylpyrrolidone) // J. Phys. Chem. B, 2006, Vol. 110, N. 34, P. 16 947−16 952.
- Giuffrida S., Condorelli G. G. Nickel Nanostructured Materials from Liquid Phase Photodeposition // J. Nanopart. Res., 2007, Vol. 9, N. 4, P. 611−619.
- Xue-Nan G., Mao Y., Xiao-Ling W., Lin W., Yan H. Deposition of Silver on Titania Films by Electron Beam Irradiation // Nucl. Instr. and Meth. in Phys. Res. B, 2006, Vol. 247, N. 2, P. 279−284.
- Bamwenda G.R., Tsubota S., Nakamura T., Haruta M. Photoassisted Hydrogen Production from a Water-Ethanol Solution: a Comparison of Activities of Au-Ti02 and Pt-Ti02 // J. Photochem. Photobiol. A: Chem., 1995, Vol. 89, N. 2, P. 177−189.
- Dawson A., Kamat P. V. Semiconductor-Metal Nanocomposites. Photoinduced Fusion and Photocatalysis of Gold-Capped Ti02 (Ti02/Gold) Nanoparticles //J. Phys. Chem. B, 2001, Vol. 105, N. 5, P. 960−966.
- Sonawane R. S., Dongare M. K. Sol-Gel Synthesis of Au/Ti02 Thin Films for Photocatalytic Degradation of Phenol in Sunlight // J. Molec. Catal. A: Chem., 2006, Vol. 243, N. 1, P. 68−76.
- Foster N. S., Noble R. D., Koval C. A. Reversible Photoreductive Deposition and Oxidative Dissolution of Copper Ions in Titanium Dioxide Aqueous Suspensions // Environ. Sci. Technol. 1993, Vol. 27, N. 2, P. 350−356.
- Foster N. S., Lancaster A. N., Noble R. D. Effect of Organics on the Photodeposition of Copper in Titanium Dioxide Aqueous Suspensions // Ind. Eng. Chem. Res., 1995, Vol. 34, N. 11, P. 3865−3871.
- Jin Sh., Shiraishi F. Photocatalytic Activities Enhanced for Decompositions of Organic Compounds over Metal-Photodepositing Titanium Dioxide // Chem. Eng. J., 2004, Vol. 97, N. 2−3, P. 203−211.
- Reilche H., Dunn W., Bard A. J. Heterogeneous Photocatalytic and Photosynthetic Deposition of Copper on Ti02 and WO3 Powders // J. Phys. Chem., 1979, Vol. 83, N. 17, P. 2248−2251.
- Li Ch.-H., Hsieh Y.-H., Chiu W.-T. Study on Preparation and Photocatalytic Performance of Ag/Ti02 and Pt/Ti02 Photocatalysts // Separ. Purif. Technol., 2007, Vol. 58, N. 1, P. 148−151.
- Stathatos E., Lianos P. Photocatalytically Deposited Silver Nanoparticles on ~ Mesoporous Ti02 Films // Langmuir, 2000, Vol. 16, N. 5, P. 2398−2400.
- Tanahashi I. Photocatalytic Preparation of Ag/Ti02 Films and Their Localized Surface Plasmon Resonance Sensing Properties // Bull. Chem. Soc. Jpn., 2007, Vol. 80, N. 10, P. 2019−2023.
- Sobana N., Muruganadham M., Swaminathan M. Nano-Ag Particles Doped
- Ti02 for Efficient Photodegradation of Direct Azo Dyes // J. Molec. Catal. A: Chem., 2006, Vol. 258, N. 1−2, P. 124−132.
- Guin D., Manorama S. V., Latha J. N. L. Photoreduction of Silver on Bare and Colloidal Ti02 Nanoparticles/Nanotubes: Synthesis, Characterization, and Tested for Antibacterial Outcome // J. Phys. Chem. C, 2007, Vol. 111, N. 36, P. 13 393−13 397.
- Rupa A. V., Manikandan D., Divakar D., Sivakumar T. Effect of Deposition of Ag on Ti02 Nanoparticles on the Photodegradation of Reactive Yellow-17 // J. Hazard. Mater., 2007, Vol. 147, N. 3, P. 906−913.
- Tanahashi I., Iwagishi H., Chang G. Localized Surface Plasmon Resonance Sensing Properties of Photocatalytically Prepared Au/Ti02 Films // Mater. Lett., 2008, Vol. 62, N. 17−18, P. 2714−2716.
- Hikov Т., Schroeter M.-K., Khodeir L. Selective Photo-Deposition of Cu onto the Surface of Monodisperse Oleic Acid Capped TIO2 Nanorods Probed by FT-IR СО-Adsorption Studies // Phys. Chem. Chem. Phys., 2006, Vol. 8, N. 13, P. 1550−1555.
- Hada H., Yonezawa Y., Akio Y., Kurakake A. Photoreduction of Silver Ion in Aqueous and Alcoholic Solutions // J. Phys. Chem., 1976, Vol. 80, N. 25, P. 2728−2731.
- Логинов А. В., Алексеева JI. В., Горбунова В. В., Шагисултанова Г. А., Бойцова Т. Б. Стабильные медные металлические коллоиды: получение, фотохимические и каталитические свойства // Журнал прикладной химии, 1994, Т. 67, Вып. 5, С. 803−808.
- Крючков А. И., Кучмий С. Я. Фотохимия комплексов переходных металлов. Киев: Наукова думка, 1989. 240 с.
- Alemany L. J., Banares М. A., Pardo Е., Martin-Jimenez F., Blasco J. M. Morphological and Structural Characterization of a Titanium Dioxide System // Mater. Charact., 2000, Vol. 44, N. 3, P. 271−275.
- NIST Chemistry WebBook (http://webbook.nist.gov/chemistry)
- Henglein A., Giersig M. Formation of Colloidal Silver Nanoparticles: Capping Action of Citrate // J. Phys. Chem. B, 1999, Vol. 103, N. 44, P. 95 339 539.
- Henglein A. Colloidal Silver Nanoparticles: Photochemical Preparation and Interaction with 02, CC14, and Some Metal Ions // Chem. Mater., 1998, Vol. 10, N. 1, P. 444−450.
- Ershov В. G., Henglein A. Time-Resolved Investigation of Early Processes in the Reduction of Ag+ on Polyacrylate in Aqueous Solution // J. Phys. Chem. B, 1998, Vol. 102, N. 52, P. 10 667−10 671.
- Biju V., Itoh Т., Anas A. Semiconductor Quantum Dots and Metal Nanoparticles: Syntheses, Optical Properties, and Biological Applications // Anal. Bioanal. Chem., 2008, Vol. 391, N. 7, P. 2469−2495.
- Бойцова Т. Б. Волкова И. Е., Горбунова В. В. Фотохимический метод регулирования дисперсного состава наноструктур переходных металлов // Журнал общей химии. 2002. Т. 72. Вып. 4. С. 688−703.
- Wang J., Zhao Н., Lui X., Li X., Xu P. Formation of Ag Nanoparticles on Water-Soluble Anatase Ti02 Clusters and the Activation of Photocatalysis // Catal. Comm., 2009, Vol. 10, N. 7, P. 1052−1056.
- Wang W. C., Neoh K. G., Kang E. Т., Lim S. L., Yuan D. Metal Ion Reduction and Resultant Deposition on Viologen-Functionalized LDPE Films and Viologen-Containing Microporous Membranes // J. Coll. Interface Sci., 2004, Vol. 279, N. 2, P. 391−398.
- Caricato A.P., Capone S., Ciccarella G. Ti02 nanoparticle thin film deposition by matrix assisted pulsed laser evaporation for sensing applications // Appl. Surf. Sci., 2007, Vol. 253, N. 19, P. 7937−7941.
- Hidaka H., Honjo H., Horikoshi S., Serppone N. Photoinduced Agn° Cluster Deposition. Photoreduction of Ag+ ions of a Ti02-Coated Quartz Crystal Microbalance Monitored in Real Time // Sensors and Actuators B, 2007, Vol. 123, N. 2, P. 822−828.
- Barzyk W., Kowal A., Pomianowski A. SEM/EDX and AFM Study of Gold Cementation on Copper (I) Sulphide // Physicochemical Problems of Mineral Processing, 2002, Vol. 36, P. 9−20.
- Справочник химика / Под ред. Б. П. Никольского, Ленинград: Химия, 1964, Т. 3, 1008 с.
- Mikami М., Nakamura S., Kitao О. First-Principles Study of Titanium Dioxide: Rutile and Anatase // Jpn. J. Appl. Phys., 2000, Vol. 39, N. 8, P. 847−850.
- Дмитриева JI. В., Воротилова Л. С., Подкорытов И. С., Шеляпина М. Е. Сравнение параметров спектров ЯМР ядер 47Ti, 49Ti в рутиле и анатазе // Физика твердого тела, 1999, Т. 41, Вып. 7, С. 1204−1206.
- Свойства элементов (Справ, изд. в 2-х кн.) / Под ред. М. Е. Дрица, М.: Металлургия, 1997, Кн. 1, 432 с.