Academic literature on the topic 'Gold ruby glass'

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Journal articles on the topic "Gold ruby glass"

1

Wagner, F. E., S. Haslbeck, L. Stievano, S. Calogero, Q. A. Pankhurst, and K. P. Martinek. "Before striking gold in gold-ruby glass." Nature 407, no. 6805 (October 2000): 691–92. http://dx.doi.org/10.1038/35037661.

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Ruivo, Andreia, Cristina Gomes, Augusta Lima, Maria Luísa Botelho, Rita Melo, Ana Belchior, and António Pires de Matos. "Gold nanoparticles in ancient and contemporary ruby glass." Journal of Cultural Heritage 9 (December 2008): e134-e137. http://dx.doi.org/10.1016/j.culher.2008.08.003.

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3

Haslbeck, S., K. P. Martinek, L. Stievano, and F. E. Wagner. "Formation of gold nanoparticles in gold ruby glass: The influence of tin." Hyperfine Interactions 165, no. 1-4 (November 14, 2006): 89–94. http://dx.doi.org/10.1007/s10751-006-9246-0.

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4

Dararutana, Pisutti, J. Dutchaneephet, Prukswan Chetanachan, P. Wathanakul, and Narin Sirikulrat. "Effects of Gold Nanoparticles on the Fabrication of Red Colored High Refractive Index Lead Glass." Advanced Materials Research 55-57 (August 2008): 601–4. http://dx.doi.org/10.4028/www.scientific.net/amr.55-57.601.

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Red colored gold ruby glass used for decorations in ancient times was actually gold nanotechnology at work by the addition of gold particles into molten lead glass. Most of high refractive index glasses are based on lead-bearing silicate glass. High refractive index lead glasses (HRLG) made from local sands and lead oxide were successfully fabricated both in laboratory and larger scales. In this study, gold metal was doped into the lead glass mixtures. Morphology of the prepared lead glass was observed using SEM and compared with that of the red colored Ancient Thai Glass (ATG). It was found that the fabricated red colored HRLG yielded similar color and clarity to the red colored ATG. From electron micrographs, the presence of gold in lead glass was in the form of nanoparticles. The optical properties of the glasses were also examined.
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Jitwatcharakomol, T., E. Meechoowa, M. Jiarawattananon, and S. Jiemsirilers. "Kinetic Investigation on the Color Striking of Gold Ruby Glass." Procedia Engineering 32 (2012): 584–89. http://dx.doi.org/10.1016/j.proeng.2012.01.1312.

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6

TAKEBE, Hiromichi, Mayuna OKAMOTO, and Kentaro MORI. "Fabrication of gold ruby glasses using solar panel glass cullet." Journal of the Ceramic Society of Japan 129, no. 9 (September 1, 2021): 590–93. http://dx.doi.org/10.2109/jcersj2.21087.

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Ruangtaweep, Yotsakit, and Jakrapong Kaewkhao. "Preparation of Ruby Red Glasses from Gold Nanoparticles: Influence of Soaking Time." Advanced Materials Research 770 (September 2013): 96–99. http://dx.doi.org/10.4028/www.scientific.net/amr.770.96.

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In this research, effects of soaking time in melting glass process on red color development have been investigated. The red glasses were prepared from gold nanoparticles (AuNPs) with compositions of 70.475SiO2 : 11Na2O : 9CaO : 9K2O : 0.005SeO2 : 0.5SnO2 : 0.02AuNPs % by weight and vary soaking time at 1 to 5 hours. The glasses were melted the normal melt-quench technique. The color of glasses were measured by uv-visible spectrophotometer in the wavelength range 300-900 nm and color coordinate in CIEL*a*b* system. The result found that, the glasses sample with 1 and 2 hours of soaking time are shown purple color. At 3, 4 and 5 hours of soaking time are shown red color. The results reflecting that the particle size of gold particle in glass matrices at 3, 4 and 5 hours are smaller than 1 and 2 hours of soaking time.
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Almeida, J. C., E. J. C. Davim, I. M. Miranda Salvado, M. H. V. Fernandes, F. M. Costa, F. Rey-García, L. M. Francisco, and A. B. Lopes. "Red ruby glass from gold nanoparticles obtained by LASiS – a new approach." Journal of Non-Crystalline Solids 537 (June 2020): 119987. http://dx.doi.org/10.1016/j.jnoncrysol.2020.119987.

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9

Shivaprakash, Y., and R. V. Anavekar. "FABRICATION AND CHARACTERIZATION STUDIES OF LITHIUM-BORATE RUBY GLASSES CONTAINING GOLD NANOPARTICLES." International Journal of Research -GRANTHAALAYAH 5, no. 4RAST (April 30, 2017): 80–86. http://dx.doi.org/10.29121/granthaalayah.v5.i4rast.2017.3307.

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Glasses containing Au nanoparticles have been synthesized in the base glass of composition 30Li2O–70B2O3 using gold chloride (HAuCl4.3H2O) as a dopant. The characteristic ruby color has been observed which is attributed due to surface plasmon resonance of the Au nanoparticles. The hue of the color increases with the increase of concentration of the dopant. Presence of the gold nanoparticles has been confirmed by studying the optical absorption spectra in the visible range which show a characteristic absorption peak at ~560nm. XRD and SEM studies show that the addition of Au increases the kinetics of growth and crystallization. ESR studies indicate that the electronic state of gold is either Au0 or Au+.
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Shivaprakash, Y., and R. V. Anavekar. "Ionic to Electronic Conductivity Studies of Lithium-Borate Ruby-Glass-Ceramics Containing Gold Nano Particles." Transactions of the Indian Ceramic Society 70, no. 3 (July 2011): 179–82. http://dx.doi.org/10.1080/0371750x.2011.10600168.

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Dissertations / Theses on the topic "Gold ruby glass"

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Ruivo, Andreia Filipa Cardoso. "Synthesis and characterization of innovative luminescent glasses for artistic applications." Doctoral thesis, Faculdade de Ciências e Tecnologia, 2013. http://hdl.handle.net/10362/11279.

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Books on the topic "Gold ruby glass"

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Colin, Brain, and Corning Museum of Glass, eds. Glass of the alchemists: Lead crystal-gold ruby, 1650-1750. Corning, N.Y: Corning Museum of Glass, 2008.

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2

Kerssenbrock-Krosigk, Dedo von. Rubinglas des ausgehenden 17. und des 18. Jahrhunderts. Mainz am Rhein: P. von Zabern, 2001.

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Book chapters on the topic "Gold ruby glass"

1

"Gold-Ruby Glass from a Potassium-Antimony-Borosilicate Melt with a Controlled Annealing." In Synthesis, Properties and Mineralogy of Important Inorganic Materials, 254–66. Chichester, UK: John Wiley & Sons, Ltd, 2011. http://dx.doi.org/10.1002/9780470976012.ch17.

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