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HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS

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HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS ( handbook-onphysics-and-chemistry-rare-earths )

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Rare Earth-Doped Phosphors for White LEDs Chapter 278 117 Mikami, M., Watanabe, H., Uheda, K., Shimooka, S., Shimomura, Y., Kurushima, T., Kijima, N., 2009a. New phosphors for white LEDs: material design concepts. Mater. Sci. Eng. 1, 012002. Mikami, M., Shimooka, S., Uheda, K., Imura, H., Kijima, N., 2009b. New green phosphor Ba3Si6O12N2:Eu for white LED: crystal structure and optical properties. Key Eng. Mater. 403, 11–14. Miyakawa, T., Dexter, D.L., 1970. Phonon sidebands, multiphonon relaxation of excited states, and phonon-assisted energy transfer between ions in solids. Phys. Rev. B 1, 2961–2969. Mueller-Mach, R., Mueller, G.O., Krames, M.R., Hoppe, H.A., Stadler, F., Schick, W., Juestel, T., Schmidt, P., 2005. Highly efficient all-nitride phosphor-converted white light emitting diode. Phys. Status Solidi A 202, 1727–1732. Mueller-Mach, R., Mueller, G.O., Krames, M.R., Shchekin, O.B., Schmidt, P.J., Bechtel, H., Chen, C.-H., Steigelmann, O., 2009. All-nitride monochromatic amber-emitting phosphor- converted light-emitting diodes. Phys. Status Solidi (RRL) 3, 215–217. Mumme, W.G., Hill, R.J., Bushnell, G.W., Segnit, E.R., 1995. Rietveld crystal structure refine- ments, crystal chemistry and calculated powder diffraction data for the polymorphs of dicalcium silicate and related phases. Neues Jahrbuch f€ur Mineralogie—Abhandlungen 169, 35–68. Mumme, W.G., Cranswick, L., Chakoumakos, B., 1996. Rietveld crystal structure refinements from high temperature neutron powder diffraction data for the polymorphs of dicalcium silicate. Neues Jahrbuch f€ur Mineralogie—Abhandlungen 170, 171–188. Nakagawa, T., Matsuoka, H., Sawa, M., Idehara, K., Katsura, M., 1997. Preparation of lanthanide nitrides by carbothermic reduction using ammonia. J. Nucl. Mater. 247, 147–150. Nakamura, S., Fasol, G., 1997. The Blue Laser Diode, first ed. Springer-Verlag, Heidelberg. Nakamura, S., Mukai, T., Senoh, M., 1994. Candela-class high-brightness InGaN/AlGaN double- heterostructure blue-light-emitting diodes. Appl. Phys. Lett. 64, 1687. Nakamura, M., Kato, H., Takatsuka, Y., Petrykin, V., Tezuka, S., Kakihana, M., 2010. Synthesis and luminescence properties of a Cyan-blue thiosilicate-based phosphor SrSi2S5:Eu2+. J. Inf. Disp. 11, 135–139. Nakano, T., Kawakami, Y., Uematsu, K., Ishigaki, T., Toda, K., Sato, M., 2009. Novel Ba–Sc–Si- oxide and oxynitride phosphors for white LED. J. Lumin. 129, 1654–1657. Nakazawa, E., 2006. Fundamentals of luminescence. In: Yen, W.M., Shionoya, S., Yamamoto, H. (Eds.), Transient characteristics of luminescence, Phosphor Handbook, second ed., vol. 2(7), CRC Press, New York, pp. 83–97. Nakazawa, E., Shionoya, S., 1967. Energy transfer between trivalent Rare earth ions in inorganic solids. J. Chem. Phys. 47, 3211–3219. Nakazawa, E., Shionoya, S., 1970. Relaxation between excited levels of Tb3+ ion due to resonance energy transfer. J. Phys. Soc. Jpn. 28, 1260–1265. Narita, K., 2006. Methods of Phosphor Synthesis and Related Technology. In: Yen, W.M., Shionoya, S., Yamamoto, H. (Eds.), Phosphor Handbook, second ed., CRC Press, New York, pp. 341–354 (Chapter 4, Section 1). Nazarov, M., Yoon, C., Kwak, C.H., Sohn, J.R., 2006. Quantum efficiency of Yttrium and Terbium garnets. Moldavian J. Phys. Sci. 5 (N1), 42–49. Nguyen, H.D., Lin, C.C., Fang, M.H., Liu, R.S., 2014. Synthesis of Na2SiF6:Mn4+ red phosphors for white LED applications by co-precipitation. J. Mater. Chem. C 2, 10268–10272. Noguchi, T., Hase, T., Miyasaka, Y., 1996. Analysis of the dependence of ferroelectric properties of strontium bismuth tantalate (SBT) thin films on the composition and process temperature. Jpn. J. Appl. Phys. 35, 4900–4904.

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