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Metal Layered sentence examples within Transition Metal Layered
The introduction of the derivatives does not excessively induce changes in the transition metal layered oxide structure as tested by XRD, SEM, TEM, and XPS.
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Transition metal layered hydroxides belonging to the brucite-type structure family have been shown to display remarkable electrochemical activity.
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Metal Layered sentence examples within metal layered double
Transition metal layered double hydroxide (LDH) has a great potential in electrocatalysis due to its unique sheet-like nanostructure and low cost.
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Based on their characteristics, transition metal layered double hydroxides have been of great scientific interest for their use in supercapacitors.
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Metal Layered sentence examples within metal layered oxide
Transitional metal layered oxides as the most important cathode materials have been widely investigated in lithium-ion batteries and sodium-ion batteries.
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The introduction of the derivatives does not excessively induce changes in the transition metal layered oxide structure as tested by XRD, SEM, TEM, and XPS.
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Metal Layered sentence examples within metal layered hydroxide
Transition metal layered hydroxides belonging to the brucite-type structure family have been shown to display remarkable electrochemical activity.
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Herein, a nitrogenous organic modified bimetal layered hydroxide salts (LHS) precursor is used to prepare CoNi alloy and CoO coupled nitrogen-doped carbon (NC) hybrids on carbon paper (CP) via a one-step pyrolysis at only 500°C.
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Metal Layered sentence examples within metal layered composite
Transitional metal layered oxides as the most important cathode materials have been widely investigated in lithium-ion batteries and sodium-ion batteries.
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The introduction of the derivatives does not excessively induce changes in the transition metal layered oxide structure as tested by XRD, SEM, TEM, and XPS.
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Transition metal layered hydroxides belonging to the brucite-type structure family have been shown to display remarkable electrochemical activity.
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Ni-rich transition metal layered oxides as one of the most promising cathodes for Li-ion batteries possess discernible advantages such as high energy density and discharge capacity.
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Transition metal layered double hydroxide (LDH) has a great potential in electrocatalysis due to its unique sheet-like nanostructure and low cost.
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Based on their characteristics, transition metal layered double hydroxides have been of great scientific interest for their use in supercapacitors.
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The combination of layered nanorod arrays with unique core-shell structure and transition metal layered double hydroxide (LDH) is considered as a feasible solution to improve the electrochemical performances of capacitor electrode.
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Ternary metal layered double hydroxides (LDHs) have been widely used in supercapacitors (SCs) due to their polyvalent state and high electrochemical activity.
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Obtained spectroscopic and theoretical data are very important for the consideration of possible correlated-electron phenomena in such transition-metal layered materials, where the interplay between different degrees of freedom for electrons defines their electronic properties, allowing one to understand their optical and transport properties and to propose further possible applications in electronics, spintronics, and catalysis.
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Transition metal layered double hydroxides (TM LDHs) nanosheets have stimulated tremendous research enthusiasm, which is gifted with their tunable chemical compositions, large layer distances and superior electrochemical performance.
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Herein, a nitrogenous organic modified bimetal layered hydroxide salts (LHS) precursor is used to prepare CoNi alloy and CoO coupled nitrogen-doped carbon (NC) hybrids on carbon paper (CP) via a one-step pyrolysis at only 500°C.
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Owing to their low cost, transition metal layered double hydroxides (LDHs) have the potential to become the electrode material of choice for supercapacitors if they can provide good cyclic stability and high specific capacity.
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Laser light is incident on metal layered on glass prism in attenuated total reflection Kretschmann configuration (ATR) which generates SPW.
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The phase evolution and anion redox behaviours under electrochemical cycling of sodium transition metal layered oxides have both been intensively studied.
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In this paper, we have prepared the flower-like nanoarchitecture of the Ni–Co binary metal layered hydroxides (Ni–Co-BMLHs) by urea assisted Solvothermal process and formed their nanocomposite with 5% CNTs via ultra-sonication approach.
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Triple-layered Ti–Nb–Ti foils were introduced into ZrB2-based ceramics to form heterogeneous ceramic–metal layered composites.
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This research provides novel strategy for the development of heterogeneous ceramic–metal layered composites with superior fracture toughness.
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In this paper, a novel quadri-metal layered double hydroxide Mg–Al–Cu–Fe–CO3 (LDH) was synthesized by a co-precipitation method.
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This work provides a strategy to develop efficient metal layered double hydroxide OER catalysts.
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Sodium transition metal layered oxides are a class of materials which exhibits fascinating properties, such as high thermoelectric power.
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Transition metal layered double hydroxides (LDHs) are one of the great potential electrode materials for pseudocapacitors.
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A new family of single crystalline transition metal layered organophosphates, with ~185000 metal phosphate layers in a single crystal, can be exfoliated to a single-layer nanosheet via a facile and rapid solvent assisted methodology.
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Transition metal layered double hydroxides are attractive electrode materials for energy storage devices.
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We theoretically study unattenuated electromagnetic guided wave modes in centrosymmetric Weyl semimetal layered systems.
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Transition metal layered double hydroxides (LDHs) have attracted wide public attention as highly promising non-precious metal electrocatalysts.
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This can be understood from two aspects: first, the analytic mathematical description of plasmonic modes in metal–insulator–metal layered waveguide takes the form of hyperbolic cosine and sine functions; second, the summation of evanescent tails of waveguide modes would form a catenary.
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In this study, an efficient Fenton-like catalyst was developed by synthesizing a series of Cu-based multi-metal layered double hydroxides (CuNiFeLa-LDHs) to degrade FF in aqueous solution.
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