• Title/Summary/Keyword: Langasite

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GROWTH AND CHARACTERIZATION OF $La_3Ga_5SiO_{14}$ SINGLE CRYSTALS BY THE FLOATING ZONE METHOD

  • Yoon, Won-Ki;Auh, Keun-Ho
    • Proceedings of the Korea Association of Crystal Growth Conference
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    • 1999.06a
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    • pp.253-269
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    • 1999
  • The development of telecommunication and information technology requires to develop new piezoelectric materials with small size, low impedance, wide pass band width and high thermal stability of frequency. Langasite (La3Ga5SiO14) single crystal has been researched substitute of quartz and LiNbO3 for the applications of SAW filter, BAW filter and resonator. Its single crystal growth has been carried out by Czochralski Method. So, in order to get single crystal with higher quality, in this study, lnagasite (La3Ga5SiO14) single crystal was grown by using Floating Zone (FZ) method and characterized. For the growth of langasite single crystals, the langasite powder was synthesized at 135$0^{\circ}C$ for 5hrs and the feed rod was sintered at 135$0^{\circ}C$ for 5hrs. The growing rate was 1.5mm/h and the rotation speed was 15 rpm for an upper rotation and 13 rpm for a lower rotation. In order to prevent the evaporation of gallium oxide, Ar and O2 gas mixture was flowed. The growth direction was analyzed by Laue back-scattered analysis. The composition of grown crystal was analyzed suing XRD and WDS. The electrical properties of grown crystal at various frequencies and temperature were discussed.

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The substitution effect of Langasite $(La_3Ga$_5SiO_{14})$-type compound, $Ca_3TaGa_3Si_2O_{14}$ crystals on their synthesis and crystal growth (Langasite$(La_{3}Ga$_{5}SiO_{14})$-type 인 $Ca_{3}TaGa_{3}Si_{2}O_{14}$ 결정의 합성과 경정성장에서의 치환효과)

  • Young Suk Kim;Keun Ho Auh
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.11 no.6
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    • pp.285-289
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    • 2001
  • We investigated that each site was substituted by new chemical components in Langasite ($La_3Ga_5/SiO_{14}$)-type structure with superior piezoelectric characteristics than $La_3Ga_5/SiO_{14}$. In this study $Ca_3TaGa_5Si_{2}O_{14}$ was synthesized by soilid-state reaction and grown by the $\mu$-PD(micro-pilling-down)and Cz technique. Lattice parameter and chemical composition was investigated by XRD and EPMA respectively.

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GROWTH AND CHARACTERIZATIONS OF $La_3Ga_5SiO_{14}$ SINGLE CRYSTALS AND SINTERED BODY FOR THE APPLICATIONS OF FILER AND RESONATOR

  • Jung, Il-Hyoung;Kyung Joo;Shim, Kwang-Bo;Auh, Keun-Ho
    • Proceedings of the Korea Association of Crystal Growth Conference
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    • 1998.09a
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    • pp.73-77
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    • 1998
  • Langasite(La3Ga5SiO14) is a new piezoelectric material which is similar to quartz, LN(LiNbO3) and LT(LiTaO3) in its acoustic behavior. In this study, pure Langasite and Langasite family groups were synthesized by the solid state reactions in air. For the synthesis process, diffusion species were investigated and sintered body of synthesized powders were studied on dielectric property according to surface microstructures.

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Crystal Structure and Piezoelectric Properties of Four Component Langasite A3B Ga3Si2O14 (A = Ca or Sr, B = Ta or Nb)

  • Ohsato, Hitoshi;Iwataki, Tsuyoshi;Morikoshi, Hiroki
    • Transactions on Electrical and Electronic Materials
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    • v.13 no.4
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    • pp.171-176
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    • 2012
  • As langasite $A_3BC_3D_2O_{14}$ compounds with piezoelectric properties exhibit no phase transition up to the melting point of 1,400-$1,500^{\circ}C$, many high temperature applications are expected for the SAW filter, temperature sensor, pressure sensor, and so on, based on the digital transformation of wider bandwidth and higher-bit rates. It has a larger electromechanical coupling factor compared to quartz and also nearly the same temperature stability as quartz. The $La_3Ga_5SiO_{14}$ (LGS) crystal with the $Ca_3Ga_2Ge_4O_{14}$-type crystal structure was synthesized and the crystal structure was analyzed by Mill et al. It is also an important feature that the growth of the single crystal is easy. In the case of three-element compounds such as $[R_3]_A[Ga]_B[Ga_3]_C[GaSi]_DO_{14}$ (R=La, Pr and Nd), the piezoelectric constant increases with the ionic radius of R. In this study, crystal structures of four-element compounds such as $[A_3]_A[B]_B[Ga_3]_C[Si_2]_DO_{14}$ (A = Ca or Sr, B = Ta or Nb) are analyzed by a single crystal X-ray diffraction, and the mechanism and properties of the piezoelectricity depending on the species of cation was clarified based on the crystal structure.

A promising new piezoelectric material -Langasite and its related compounds-

  • Kawanaka, Hiroyuki;Takeda, Hiroaki;Shimamura, Kiyoshi;Onozato, Norio;Fukuda, Tsuguo
    • Proceedings of the Korea Association of Crystal Growth Conference
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    • 1997.06a
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    • pp.145-145
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    • 1997
  • Recent progress of electric technology requires new piezoelectric crystals having superior properties such as zero temperature coefficients and large electromechanical coupling factors. We have developed a series of new leading chandidates, La$_3$Ga5SiO14(langasite, LGS), La3Nb0.5Ga5.5O14(LNG), La3Ta0.5O14(LTG), to satisfy those requirements. High quality LGS, LNG and LTG single crystals, with dimensions of 2 inches in diameter, were successfully grown by the Czochralski method at a pulling rate of 1mm/h. Since no variation of chemical composition was observed when whole melt in a crucible was crystallized, congruency of these compositions was confirmed. Physical constants such as elastic constants, dielectric constants and piezoelectric constants were measured. Filters and oscillators made of grown LGS, LNG and LTG single crystals showed superior properties such as three times wider passband than that of quartz, low insertion loss and easy processing, Langasite family crystals were shown to be superior materials to other known materials such as quartz, LiTaO$_3$, $\alpha$-AlPO$_4$ and Li$_2$B$_4$O7.

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Growth of new piezoelectric single crystals by the czochralski method (Czochralki법에 의한 신압전단결정의 성장)

  • An, Jin-Ho;Joo, Kyung;Jung, Yong-Sun;Auh, Keun-Ho
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.10 no.6
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    • pp.394-399
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    • 2000
  • Langasite (LGS) is a material hoped to meet needs required of new base materials for future communication devices (e.g.SAW filters). In this study, synthesis of new materials was pursued by developing new compounds with the host structure of Langasite in hopes to obtain materials with improved characteristics; compounds including $La_3$$Ta_{0.5}$$Ga_{5.5}$$O_{14}$(LTG)and $La_3$$Nb_{0.25}$$Ta_{0.25}$$Ga_{5.5}$$O_{14}$(LNTG) were synthesized by solid state reactions. Characteristics of the compound synthesized in question were determined. The single crystals of Langasite-type were grown using the Czochralski method. The growth conditions for LTG and LNTG were studied and were found to be similar to those of LGS. The growth characteristics of LNTG were observed by studying etch pit formation density along the crystal length.

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Synthesis of Langasite Powder by a Chemical Route

  • Kim, Kyoung-Jin;Kim, Jung-Hwan;Kim, Young-Do;Joo, Kwang-Suk;Shin, Kun-Chul;Auh, Keun-Ho
    • Proceedings of the Korea Association of Crystal Growth Conference
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    • 1998.06a
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    • pp.105-109
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    • 1998
  • Langasite({{{{ { La}_{ 3} {Ga }_{5 } {SiO }_{14 } , LGS}}}}) powder was prepared by a polymerized complex method based on the Pechini-type reaction. A mixed solution of ethylene glycol(EG), cotric acid(CA), lanthanum, gallium and silicon ions, with a molar ratio of EG:CA:La:Ga:Si=100:25:3:5:1, was polymerzed to from a transparent resin, which was used as a precursor for the synthesis of LGS. X-ray diffraction(XRD) patterns indicated that the LGS phase could be formed by the heat-treatment in air at 1000$^{\circ}C$ for 3hrs

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