Results 1 to 10 of about 1,152,741 (201)
Energy Storage Properties of Sol-Gel-Processed SrTiO3 Films. [PDF]
Dielectric films with a high energy storage density and a large breakdown strength are promising material candidates for pulsed power electrical and electronic applications. Perovskite-type dielectric SrTiO3 (STO) has demonstrated interesting properties desirable for capacitive energy storage, including a high dielectric constant, a wide bandgap and a ...
Liu J +8 more
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Electrochemical Energy Storage Properties of High-Porosity Foamed Cement. [PDF]
Foamed porous cement materials were fabricated with H2O2 as foaming agent. The effect of H2O2 dosage on the multifunctional performance is analyzed. The result shows that the obtained specimen with 0.6% H2O2 of the ordinary Portland cement mass (PC0.6) has appropriate porosity, leading to outstanding multifunctional property.
Zhou C, Wang Q, Zhang C.
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Energy storage properties of PVDF terpolymer/PMMA blends
Dielectrics can be used to store electric energy in capacitors and high-energy density of the materials is desirable to reduce the size or weight of capacitors.
Baojin Chu, Yang Zhou
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AbstractPrussian blue analogues (PBAs, A2T[M(CN)6], A = Li, K, Na; T = Fe, Co, Ni, Mn, Cu, etc.; M = Fe, Mn, Co, etc.) are a large family of materials with an open framework structure. In recent years, they have been intensively investigated as active materials in the field of energy conversion and storage, such as for alkaline‐ion batteries (lithium ...
Wei‐Jie Li +5 more
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Biomaterials for energy storage: Synthesis, properties, and performance
The performance, synthesis, and characteristics of bio-based systems are the main topics of this study, which investigates the possibilities of biomaterials as energy storage devices.
Md. Shakil Chowdhury +9 more
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Strategies to Improve the Energy Storage Properties of Perovskite Lead-Free Relaxor Ferroelectrics: A Review. [PDF]
Veerapandiyan V +3 more
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Effectiveness of Thermal Properties in Thermal Energy Storage Modeling [PDF]
This paper studies the influence of material thermal properties on the charging dynamics in a low temperature Thermal Energy Storage, which combines sensible and latent heat. The analysis is based on a small scale packed bed with encapsulated PCMs, numerically solved using COMSOL Multiphysics. The PCMs studied are materials constructed based on typical
Torres Sevilla, Law, Radulovic, Jovana
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Energy storage properties of ferroelectric nanocomposites
An atomistic effective Hamiltonian technique is used to investigate the finite-temperature energy storage properties of a ferroelectric nanocomposite consisting of an array of BaTiO$_{3}$ nanowires embedded in a SrTiO$_{3}$ matrix, for electric field applied along the long axis of the nanowires.
Zhijun Jiang +5 more
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Preparation and Energy Storage Properties of Copper-Based Electrode on Silicon Substrate
Purposes Transition element oxides, sulfides, and hydroxides are widely used as a kind of pseudocapacitance materials owing to their excellent theoretical specific capacitance, high power density, and low cost.
Wenlei ZHANG +5 more
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Structure, dielectric properties of low-temperature-sintering BaTiO3-based glass–ceramics for energy storage [PDF]
The 0.85BaTiO3–0.15Bi(Mg2∕3Nb1∕3)O3 (BTBMN) ceramics with low-melting-temperature B2O3–Na2B4O7–Na2SiO3 (BNN) glass addition were prepared by the solid state method.
Tong Wang +6 more
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