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Mesoporous graphitic carbon nitride was used as both a nanoreactor and a reactant for the synthesis of ternary metal nitride nanoparticles. By infiltration of a mixture of two metal precursors into mesoporous carbon nitride, the pores act first as a nanoconfinement, generating amorphous mixed oxide nanoparticles.
Markus Antonietti +2 more
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Infrared Plasmonics with Conductive Ternary Nitrides
ACS Applied Materials & Interfaces, 2017Conductive transition metal nitrides are emerging as promising alternative plasmonic materials that are refractory and CMOS-compatible. In this work, we show that ternary transition metal nitrides of the B1 structure and consisting of a combination of group-IVb transition metal, such as Ti or Zr, and group III (Sc, Y, Al) or group II (Mg, Ca) elements ...
C. Metaxa +4 more
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AlGaN-based ternary nitride memristors
Applied Physics A, 2021Resistive switching memory or memristors have been extensively studied worldwide, driven by perspective applications in nonvolatile memory, processing-in-memory, and neuromorphic computing hardware. Binary oxides are the most prevalent memristive materials; however, non-oxide materials can also exhibit resistive switching.
Seok Choi +3 more
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Deposition and characterization of ternary nitrides
Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, 1988Hard coatings of titanium nitride, titanium carbide, and aluminum oxide are the materials most widely used for improved performance and productivity on high-speed steel and cemented carbide tools. However, very little effort has been focused on the deposition of ternary nitrides.
H. Randhawa +2 more
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Microwave Synthesis of Ternary Nitride Materials
Journal of Solid State Chemistry, 1997Abstract The utility of microwave heating and microwave generated nitrogen plasmas as a synthetic technique toward the synthesis of nitrides is demonstrated. The synthesis of several binary and ternary nitrides, including TiN, AlN, VN, Li 3 FeN 2 , Li 5 TiN 3 , and Li 3 AlN 2 , using either a microwave heating source or a microwave generated nitrogen
Joel D. Houmes, Hans-Conrad zur Loye
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The chemistry of ternary and higher lithium nitrides
Coordination Chemistry Reviews, 2013Lithium, as the lightest metallic element, forms a wide range of compounds of increasing importance as functional materials. This is especially true in an energy storage and conversion context, for example, where high energy density and high lithium ion mobility provide the drivers behind technologies such as rechargeable batteries and hydrogen storage.
Tapia-Ruiz, Nuria +2 more
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Synthesis of ternary nitrides by mechanochemical alloying
J. Mater. Chem., 2002Ternary metal nitrides (of general formula MxM′yNz) attract considerable interest because of their special mechanical, electrical, magnetic, and catalytic properties. Usually they are prepared by ammonolysis of ternary oxides (MxM′yOm) at elevated temperatures.
Claus J. H. Jacobsen +3 more
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Ferromagnetic frustration in ternary nitride ZnFe 3 N
Physical Chemistry Chemical Physics, 2020As a new antiperovskite nitride, ZnFe 3 N was synthesized and characterized by almost completely substituting iron atoms at corner positions of γ′-Fe 4 N.
W. Wang +6 more
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Ternary Nitrides, Phosphides, and Arsenides of Lithium
Angewandte Chemie International Edition in English, 1968AbstractTernary phases have been prepared from lithium, another metal, and nitrogen, phosphorus, or arsenic. The ternary compounds, in particular the nitrides, are thermally more stable than the binary compounds. The lithium gives rise to a relatively high polar bonding component.
R. Juza, K. Langer, K. Von Benda
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Preparation and properties of the ternary nitride ZrNF
Solid State Communications, 2004Abstract A single crystal of ZrNF has been successfully prepared by the high-temperature and high-pressure method. The crystals had the plate-like habit and was colorless and transparent. Unlike the layer structured β-ZrNX (X=Cl, Br, I) crystals prepared by the same method, which consist of ZrN double layers sandwiched between close-packed halogen ...
Liping Zhu, Xuean Chen, Shoji Yamanaka
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