garnet germanium

  • Gadolinium Gallium Garnet SpringerLink

    Gadolinium gallium garnet (Gd3Ga5O12, or GGG) is perhaps the most perfect single crystal material being produced in large quantities in the world today. The achievement of this high state of

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  • Porous lithium garnet makes effective solid electrolyte Materials

    Aug 30, 2016 Scientists have developed a solidstate lithium ion battery with a porous lithium garnet electrolyte and a viscous electrode that seeps into the pores.

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  • Broad redemission of Sr 3 Y 2 Ge 3 O 12 :Eu 2+ garnet phosphors

    Feb 27, 2017 Broad redemission of Sr3Y2Ge3O12:Eu2+ garnet phosphors under blue excitation for warm WLED appliions. Sk. Khaja Hussain ORCID logo and Jae Su Yu* Department of Electronic Engineering, Institute for Wearable Convergence Electronics, Kyung Hee University, Yonginsi, Gyeonggido 446701, 

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  • Electrochemical Stability of Li<sub> Semantic Scholar

    Dec 21, 2015 materials, such as Ligarnet Li7La3Zr2O12. (LLZO) and Li10GeP2S12. (LGPS) have solid electrolytes, Li10GeP2S12 and cubic Ligarnet Li7La3Zr2O12, are chosen as the model materials for sulfide and . sponding to the LiP and LiGe alloying processes upon lithia tion. Our calculations predicted the 

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  • Nd3+doped Ca3Ga2Ge3O12 garnet: A new optical pressure

    A pressureinduced shift of the emission spectrum corresponding to the near infrared 4F3/2 → 4I9/2 transition of Nd 3+ ions in a calcium gadolinium germanium garnet was obtained in the interval from ambient conditions up to 23 GPa in order to test its suitability as an optical pressure sensor. Although several Nd 3+ 

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  • Germanium Isotope Geochemistry Archimer Ifremer

    source mineralogy (e.g. garnet vs. spinel). Germanium in sulfides. Germanium can be strongly and variably enriched in sulfide minerals (Bernstein 1985 Holl et al. 2007 Rosenberg 2009). Besides the rare occurences of sulfides that incorporate Ge at percent level. (e.g. germanite, renierite, and briartite), Ge occurs at trace 

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  • Firstprinciples studies on ion dopants and Ceder Group

    Apr 30, 2015 electrolytehode interphases for lithium garnets Lithium garnet with the formula Li7La3Zr2O12 (LLZO) has many properties of an ideal . Ge. 4+., Si. 4+., Ca. 2+., Sr. 2+.,. Ba. 2+., Hf. 4+. ) 2,9,10,14–25., and for some of these, significant effort has gone into determining on which host site these 

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  • Mehmet Cengiz Onbasli Google Scholar Citations

    Pulsed laser deposition of epitaxial yttrium iron garnet films with low Gilbert damping and bulklike magnetization. MC Onbasli, A Kehlberger, DH Kim, High quality singlecrystal germaniumoninsulator on bulk Si substrates based on multistep lateral overgrowth with hydrogen annealing. HY Yu, S Cheng, JH Park, AK 

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  • Mineral Commodity Summaries 2017 USGS Mineral Resources

    Jan 19, 2017 U.S. Department of the Interior. U.S. Geological Survey. MINERAL COMMODITY. SUMMARIES 2017. Abrasives. Fluorspar. Mercury. Silicon. Aluminum. Gallium. Mica. Silver. Antimony. Garnet. Molybdenum. Soda Ash. Arsenic. Gemstones. Nickel. Stone. Asbestos. Germanium. Niobium. Strontium. Barite.

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  • Material: Germanium (Ge) Korth Kristalle

    Description of the material Germanium (Ge) of Korth Kristalle with datasheets, und spectraldiagrams.

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  • GarnetLike Structures of HighPressure Cadmium Science

    GarnetLike Structures of. HighPressure Cadmium Germanate and Calcium Germanate. Abstract. Crystals of CdGeO3 grown at a pressure of 65 kilobars are tetrag onal and have an ordered, garnetlike crystal structure with cadmium occupy ing the dodecahedral and octahedral sites, and germanium the octahedral and.

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  • Conformal, Nanoscale ZnO Surface Modifiion of GarnetBased

    Dec 12, 2016 Solidstate electrolytes are known for nonflammability, dendrite blocking, and stability over large potential windows. Garnetbased solidstate electrolytes have attracted much attention for their high ionic conductivities and stability with lithium metal anodes. However, highinterface resistance with lithium 

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  • Refractive index of Ge (Germanium) Icenogle

    Comments. 293 K (20 °C). References. 1) Icenogle et al.. Refractive indexes and temperature coefficients of germanium and silicon Appl. Opt. 15 23482351 (1976) 2) N. P. Barnes and M. S. Piltch. Temperaturedependent Sellmeier coefficients and nonlinear optics average power limit for germanium J. Opt. Soc. Am. 69 

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  • Transition from Superlithiophobicity to Superlithiophilicity of Garnet

    Aug 28, 2016 Reducing Interfacial Resistance between GarnetStructured SolidState Electrolyte and LiMetal Anode by a Germanium Layer. Wei Luo, Yunhui Gong, Yizhou Zhu, Yiju Li, Yonggang Yao, Ying Zhang, Kun Kelvin Fu, Glenn Pastel, ChuanFu Lin, Yifei Mo, Eric D. Wachsman, Liangbing Hu. Advanced 

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  • Transition from Superlithiophobicity to Superlithiophilicity of Garnet

    Aug 28, 2016 Reducing Interfacial Resistance between GarnetStructured SolidState Electrolyte and LiMetal Anode by a Germanium Layer. Wei Luo, Yunhui Gong, Yizhou Zhu, Yiju Li, Yonggang Yao, Ying Zhang, Kun Kelvin Fu, Glenn Pastel, ChuanFu Lin, Yifei Mo, Eric D. Wachsman, Liangbing Hu. Advanced 

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  • Crystal chemistry of the garnets RRuff

    some germanium garnets. J. Physics. Chern. Solids. 21 (1961). 2532. 45S. GELLER and G. P. ESPINOSA, data not previously published. 46A. TAUBER, E. BANKS and H. KEDESDY,. Synthesis of germanate garnets. Acta Crystallogr. 11 (1958) 893~894. 47B.V.MILL'Synthesis of garnets containing Mn3+ and Rh3+. Zhur.

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  • The infrared refractive index of garnet ferrites IOPscience

    C. Schüler et al 1972 physica status solidi (a) 14 153. Crossref. Anisotropy and magnetostriction of germanium‐substituted yttrium iron garnet. P. Hansen et al 1972 Journal of Applied Physics 43 4740. Crossref. Mobile Cylindrical Magnetic Domains in Epitaxial Garnet Films D. M. Heinz et al 1971 Journal of Applied Physics 

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  • Properties of the exotic metastable ST12 germanium allotrope Nature

    Jan 3, 2017 Diamondcubic germanium is a wellknown semiconductor, although other 'exotic' forms may possess distinct properties. .. The pressure was calibrated through monitoring phase transitions of certain materials: quartz to coesite, CaGeO3 garnet to perovskite, coesite to stishovite and olivine to wadsleyite 

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  • OSA GeonSi laser operating at room temperature

    Ge is an interesting candidate owing to its pseudodirect gap properties and compatibility with Si complementary metal oxide semiconductor technology. Recently we have demonstrated roomtemperature photoluminescence, electroluminescence, and optical gain from the direct gap transition of bandengineered GeonSi 

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  • Anisotropy and magnetostriction of germanium‐substituted yttrium

    The anisotropy, magnetostriction, and linewidth of germanium‐substituted yttrium iron garnet single crystals of the composition {Y3−xMeIIx} [Fe2](Fe3−y−zMeIVyFeIIz)O12−δFδ(MeII=Ca2+,Pb2+,andMeIV=Ge4+,Si4+) { Y 3−x Me x II } [ Fe 2 ]( Fe 3−y−z Me y IV Fe z II ) O 12−δ F δ (Me II = Ca 2+, Pb 2+, and Me IV = Ge 4+, Si 

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  • Calcium gallium germanium garnet as a substrate for magnetic

    Czochralskigrown calcium gallium germanium garnet has been investigated as a possible substitute for gadolinium gallium garnet. The melting temperature of Ca3Ga2Ge3O12 (1380°C as compared with 1740°C for Gd3Ga5O12) allows the use of platinum as a crucible material. The compositional range of melts that form 

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  • Narrow Band Deep Red Photoluminescence of Y2Mg3Ge3O12

    Sep 21, 2017 The composition Y2Mg3Ge3O12:Mn4+,Li+ exhibits efficient red photoluminescence peaking at 658 nm, which can be assigned to the 2Eg → 4A2g intraconfigurational transition of Mn4+ ([Ar]3d3 configuration) loed at the octahedral site in the garnet structure. Photoluminescence properties, such as 

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  • Gadolinium Gallium Garnet SpringerLink

    Gadolinium gallium garnet (Gd3Ga5O12, or GGG) is perhaps the most perfect single crystal material being produced in large quantities in the world today. The achievement of this high state of

    >>READ
  • Growth model and structure evolution of Ag layers deposited on Ge

    This is confirmed by the Maxwell–Garnett calculation of effective permittivity of Ge inclusions embedded in silver with a GetoAg volume ratio of 1:10, which corresponds to 20 nm thick Ag film deposited on 2 nm thick Ge wetting layer. For these calculations, the permittivity of silver matrix was assumed as the permittivity of 20 

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  • Gadolinium gallium garnet Wikipedia

    Gadolinium Gallium Garnet is a synthetic crystalline material of the garnet group, with good mechanical, thermal, and optical properties. It is typically colorless. It has a cubic lattice, a density of 7.08 g/cm3 and its Mohs hardness is variously noted as 6.5 and 7.5. Its crystals are produced with the Czochralski method. During 

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  • Anisotropy and magnetostriction of germanium‐substituted yttrium

    The anisotropy, magnetostriction, and linewidth of germanium‐substituted yttrium iron garnet single crystals of the composition {Y3−xMeIIx} [Fe2](Fe3−y−zMeIVyFeIIz)O12−δFδ(MeII=Ca2+,Pb2+,andMeIV=Ge4+,Si4+) { Y 3−x Me x II } [ Fe 2 ]( Fe 3−y−z Me y IV Fe z II ) O 12−δ F δ (Me II = Ca 2+, Pb 2+, and Me IV = Ge 4+, Si 

    >>READ
  • Nd3+doped Ca3Ga2Ge3O12 garnet: A new optical pressure

    A pressureinduced shift of the emission spectrum corresponding to the near infrared 4F3/2 → 4I9/2 transition of Nd 3+ ions in a calcium gadolinium germanium garnet was obtained in the interval from ambient conditions up to 23 GPa in order to test its suitability as an optical pressure sensor. Although several Nd 3+ 

    >>READ
  • Garnet Solid Solution of Y3AL5O12Gd3Ga5O12Y3Ga5O12 (YAG

    This paper considers a solid solution of YAG with other garnets: Gd3Ga5O12 (GGG) and Y3Ga5O12 (YGG) as a prospective hostphase for immobilization of weapons . J. P. M. DAMEN, J. A. PISTORIOUS, J. M. ROBERTSON, "Calcium Gallium Germanium Garnet as a Substrate for Magnetic Bubble Appliions," Mater.

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  • Gadolinium gallium garnet Wikipedia

    Gadolinium Gallium Garnet is a synthetic crystalline material of the garnet group, with good mechanical, thermal, and optical properties. It is typically colorless. It has a cubic lattice, a density of 7.08 g/cm3 and its Mohs hardness is variously noted as 6.5 and 7.5. Its crystals are produced with the Czochralski method. During 

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  • Ereada FIR Mats Amethyst, Agate, Chalcedony, Garnet Gems

    Several types of special Bio Ceramic Balls made of Tourmaline, Germanium, Elvan, White Clay, Charcoal, Gold Ore and Yellow Mud are added to multiply the healthful effects.*. The most important of all these Crystals are still the A+ Grade Natural Purple Amethysts. Ereada™ Amethyst Mats are heavier with up to 30% more 

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  • Reducing Interfacial Resistance between Garnet‐Structured Solid

    Apr 18, 2017 This study proposes a new methodology for reducing the garnet/Li‐metal interfacial resistance by depositing a thin germanium (Ge) (20 nm) layer on garnet. By applying this approach, the garnet/Li‐metal interfacial resistance decreases from ≈900 to ≈115 Ω cm2 due to an alloying reaction between the Li 

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