Thin Film Modeling of Colossal Permittivity Material
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Colossal Permittivity and Low Dielectric Loss of Thermal Oxidation Single-Crystalline Si Wafers. [PDF]
Sun Y, Wu D, Liu K, Zheng F.
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Dielectric Responses of (Zn0.33Nb0.67)xTi1-xO2 Ceramics Prepared by Chemical Combustion Process: DFT and Experimental Approaches. [PDF]
Nachaithong T +2 more
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Crystalline Structure, Defect Chemistry and Room Temperature Colossal Permittivity of Nd-doped Barium Titanate. [PDF]
Sun Q +6 more
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Colossal permittivity behavior and its origin in rutile (Mg1/3Ta2/3)xTi1-xO2. [PDF]
Dong W +11 more
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Machine learning and atomistic origin of high dielectric permittivity in oxides. [PDF]
Shimano Y, Kutana A, Asahi R.
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Research on the physical properties of LiMn0.5Fe2O4 spinel ferrites by the combination of optical, magnetic, and dielectric behaviors. [PDF]
Soudani I +7 more
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Ultrahigh dielectric permittivity in oxide ceramics by hydrogenation. [PDF]
Duong NX +19 more
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Sintering Temperature, Frequency, and Temperature Dependent Dielectric Properties of Na0.5Sm0.5Cu3Ti4O12 Ceramics. [PDF]
Kotb HM, Khater HA, Saber O, Ahmad MM.
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Novel Layered Iridate Ba7Ir3O13+{\delta} Thin Films with Colossal Permittivity
Ba7Ir3O13+{\delta} in thin film form is discovered. These films are characterized by colossal permittivity (CP) ~104 at room temperature, attributable to the colossal internal barrier layer capacitance effect at atomically thin domain boundaries. These findings suggest a new route to seeking novel CP materials through designing atomically thin domain ...
Miao, Ludi +9 more
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