2010
DOI: 10.1021/cm1009493
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In Situ Catalytic Encapsulation of Core-Shell Nanoparticles Having Variable Shell Thickness: Dielectric and Energy Storage Properties of High-Permittivity Metal Oxide Nanocomposites

Abstract: Aluminum oxide encapsulated high-permittivity (ε) BaTiO 3 and ZrO 2 core-shell nanoparticles having variable Al 2 O 3 shell thicknesses were prepared via a layer-by-layer methylaluminoxane coating process. Subsequent chemisorptive activation of the single-site metallocene catalyst [rac-ethylenebisindenyl]zirconium dichloride (EBIZrCl 2 ) on these Al 2 O 3 -encapsulated nanoparticles, followed by propylene addition, affords 0-3 metal oxide-isotactic polypropylene nanocomposites. Nanocomposite microstructure is … Show more

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Cited by 185 publications
(148 citation statements)
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“…In order to improve the dielectric breakdown strength, many methods have been adopted, such as controlling grain size [3,9,10], coating/mixing with low-melting point glass to remove the porosity [11][12][13][14][15][16], and forming new solid solutions with other compounds to reduce the polarization loss [17]. Among these, coating is a simple but effective method and can be operated at ambient temperature.…”
Section: Introductionmentioning
confidence: 99%
“…In order to improve the dielectric breakdown strength, many methods have been adopted, such as controlling grain size [3,9,10], coating/mixing with low-melting point glass to remove the porosity [11][12][13][14][15][16], and forming new solid solutions with other compounds to reduce the polarization loss [17]. Among these, coating is a simple but effective method and can be operated at ambient temperature.…”
Section: Introductionmentioning
confidence: 99%
“…The dielectric loss and conductivity both decrease with the increase of SiO 2 thickness. The reason can be attributed to the gradually increased suppressing effects on electron conduction process [14].…”
Section: (B) and (D) Reveals The Interfacial Region Status Inmentioning
confidence: 99%
“…For spherical dispersions, the effective dielectric constant of ceramics can be described using the Maxwell-Garnett (MG) effective medium theory [23,24]:…”
Section: Tablementioning
confidence: 99%