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León-Reina, Laura Porras-Vázquez, José M. Losilla, Enrique R. Moreno-Real, Laureano and Aranda, Miguel A.G. 2008. Structure and oxide anion conductivity in Ln2(TO4)O (Ln=La, Nd; T=Ge, Si). Journal of Solid State Chemistry, Vol. 181, Issue. 9, p. 2501.
  • CrossRef
  • Google Scholar

Phanon, Delphine and Černý, Radovan 2008. Crystal Structure of the B‐type Dierbium Oxide ortho‐Oxosilicate Er2O[SiO4]. Zeitschrift für anorganische und allgemeine Chemie, Vol. 634, Issue. 11, p. 1833.
  • CrossRef
  • Google Scholar

Kobayashi, Kiyoshi Matsushita, Yoshitaka Igawa, Naoki Izumi, Fujio Nishimura, Chikashi Miyoshi, Shogo Oyama, Yukiko and Yamaguchi, Shu 2008. Water-based sol–gel synthesis and crystal structure refinement of lanthanum silicate apatite. Solid State Ionics, Vol. 179, Issue. 38, p. 2209.
  • CrossRef
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Iwata, Tomoyuki Béchade, Emilie Fukuda, Koichiro Masson, Olivier Julien, Isabelle Champion, Eric and Thomas, Philippe 2008. Lanthanum‐ and Oxygen‐Deficient Crystal Structures of Oxide–Ion Conducting Apatite‐Type Silicates. Journal of the American Ceramic Society, Vol. 91, Issue. 11, p. 3714.
  • CrossRef
  • Google Scholar

Kakushima, K. Tachi, K. Adachi, M. Okamoto, K. Sato, S. Song, J. Kawanago, T. Ahmet, P. Tsutsui, K. Sugii, N. Hattori, T. and Iwai, H. 2010. Interface and electrical properties of La-silicate for direct contact of high-k with silicon. Solid-State Electronics, Vol. 54, Issue. 7, p. 715.
  • CrossRef
  • Google Scholar

Guillot, Stéphanie Beaudet‐Savignat, Sophie Lambert, Sébastien Roussel, Pascal Tricot, Gregory Vannier, Rose‐Noelle and Rubbens, Annick 2011. Local relaxation in lanthanum silicate oxyapatites by Raman scattering and MAS‐NMR. Journal of Raman Spectroscopy, Vol. 42, Issue. 6, p. 1455.
  • CrossRef
  • Google Scholar

Fukuda, Koichiro Asaka, Toru Ishizawa, Nobuo Mino, Hiroki Urushihara, Daisuke Berghout, Abid Béchade, Emilie Masson, Olivier Julien, Isabelle and Thomas, Philippe 2012. Combined Effect of Germanium Doping and Grain Alignment on Oxide-Ion Conductivity of Apatite-Type Lanthanum Silicate Polycrystal. Chemistry of Materials, Vol. 24, Issue. 13, p. 2611.
  • CrossRef
  • Google Scholar

Kimani, Martin M. McMillen, Colin D. and Kolis, Joseph W. 2012. Hydrothermal Synthesis and Comparative Coordination Chemistry of New Rare-Earth V4+ Compounds. Inorganic Chemistry, Vol. 51, Issue. 6, p. 3588.
  • CrossRef
  • Google Scholar

Fukuda, Koichiro Asaka, Toru and Uchida, Tomohiro 2012. Thermal expansion of lanthanum silicate oxyapatite (La9.33+2x(SiO4)6O2+3x), lanthanum oxyorthosilicate (La2SiO5) and lanthanum sorosilicate (La2Si2O7). Journal of Solid State Chemistry, Vol. 194, Issue. , p. 157.
  • CrossRef
  • Google Scholar

Fukuda, Koichiro Asaka, Toru Oyabu, Masayuki Urushihara, Daisuke Berghout, Abid Béchade, Emilie Masson, Olivier Julien, Isabelle and Thomas, Philippe 2012. Crystal Structure and Oxide-Ion Conductivity along c-Axis of Apatite-Type Lanthanum Silicate with Excess Oxide Ions. Chemistry of Materials, Vol. 24, Issue. 23, p. 4623.
  • CrossRef
  • Google Scholar

Kobayashi, Kiyoshi and Sakka, Yoshio 2012. Phase relationships in the quasi-ternary LaO1.5–SiO2–MgO system at 1773 K. Science and Technology of Advanced Materials, Vol. 13, Issue. 4, p. 045006.
  • CrossRef
  • Google Scholar

Fukuda, Koichiro Asaka, Toru Hara, Shinji Oyabu, Masayuki Berghout, Abid Béchade, Emilie Masson, Olivier Julien, Isabelle and Thomas, Philippe 2013. Crystal Structure and Oxide-Ion Conductivity along c-Axis of Si-Deficient Apatite-Type Lanthanum Silicate. Chemistry of Materials, Vol. 25, Issue. 10, p. 2154.
  • CrossRef
  • Google Scholar

Seki, T. Kawanago, T. Kakushima, K. Ahmet, P. Kataoka, Y. Nishiyama, A. Sugii, N. Tsutsui, K. Natori, K. Hattori, T. and Iwai, H. 2013. Electrical and infrared absorption studies on La-silicate/Si interface. p. 55.
  • CrossRef
  • Google Scholar

Krivovichev, Sergey V. Mentré, Olivier Siidra, Oleg I. Colmont, Marie and Filatov, Stanislav K. 2013. Anion-Centered Tetrahedra in Inorganic Compounds. Chemical Reviews, Vol. 113, Issue. 8, p. 6459.
  • CrossRef
  • Google Scholar

Kobayashi, Kiyoshi and Sakka, Yoshio 2015. Sinterable Powder Fabrication and the Oxygen-ion Conductivity of Lanthanum Silicate Oxyapatite. Journal of the Society of Powder Technology, Japan, Vol. 52, Issue. 11, p. 648.
  • CrossRef
  • Google Scholar

Durach, Dajana and Schnick, Wolfgang 2015. Non‐Condensed (Oxo)Nitridosilicates: La3­[SiN4]F and the Polymorph o‐La3­[SiN3O]O. European Journal of Inorganic Chemistry, Vol. 2015, Issue. 24, p. 4095.
  • CrossRef
  • Google Scholar

KOBAYASHI, Kiyoshi HIRAI, Kenya SUZUKI, Tohru S. UCHIKOSHI, Tetsuo AKASHI, Takaya and SAKKA, Yoshio 2015. Sinterable powder fabrication of lanthanum silicate oxyapatite based on solid-state reaction method. Journal of the Ceramic Society of Japan, Vol. 123, Issue. 1436, p. 274.
  • CrossRef
  • Google Scholar

Fukuda, Koichiro Hasegawa, Ryo Kitagawa, Takuya Nakamori, Hiroshi Asaka, Toru Berghout, Abid Béchade, Emilie Masson, Olivier Jouin, Jenny and Thomas, Philippe 2016. Well-aligned polycrystalline lanthanum silicate oxyapatite grown by reactive diffusion between solid La2SiO5 and gases [SiO+1/2O2]. Journal of Solid State Chemistry, Vol. 235, Issue. , p. 1.
  • CrossRef
  • Google Scholar

Ogugua, Simon N. Shaat, Samy K.K. Swart, Hendrik C. and Ntwaeaborwa, Odireleng M. 2016. The influence of Dy 3+ ions concentration and annealing on the properties of LaGdSiO 5 :Dy 3+ nanophosphors. Journal of Luminescence, Vol. 179, Issue. , p. 154.
  • CrossRef
  • Google Scholar

Ogugua, Simon N. Swart, Hendrik C. and Ntwaeaborwa, Odireleng M. 2017. The dynamics of the photoluminescence of Pr 3+ in mixed lanthanum yttrium oxyorthosilicate hosts. Sensors and Actuators B: Chemical, Vol. 250, Issue. , p. 285.
  • CrossRef
  • Google Scholar

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Crystal structure of lanthanum oxyorthosilicate, La2SiO5
  • Volume 21, Issue 4
  • Koichiro Fukuda (a1), Tomoyuki Iwata (a1) and Eric Champion (a2)
  • DOI: https://doi.org/10.1154/1.2383066
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Crystal structure of lanthanum oxyorthosilicate, La2SiO5
  • Volume 21, Issue 4
  • Koichiro Fukuda (a1), Tomoyuki Iwata (a1) and Eric Champion (a2)
  • DOI: https://doi.org/10.1154/1.2383066
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Crystal structure of lanthanum oxyorthosilicate, La2SiO5
  • Volume 21, Issue 4
  • Koichiro Fukuda (a1), Tomoyuki Iwata (a1) and Eric Champion (a2)
  • DOI: https://doi.org/10.1154/1.2383066
Available formats Please select a format to save.
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