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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Nanoarchitectonics in dielectric/ferroelectric layered perovskites: from bulk 3D systems to 2D nanosheets
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Nanoarchitectonics in dielectric/ferroelectric layered perovskites: from bulk 3D systems to 2D nanosheets

机译:介质/铁电分层Perovskites的纳米建筑学:从批量3D系统到2D纳米

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摘要

We present an overview of recent investigations on the dielectric/ferroelectric properties of Dion-Jacobson- type perovskites, including bulk 3D layered systems and their exfoliated 2D nanosheets. In contrast to the Ruddlesden-Popper and Aurivillius phases, the Dion-Jacobson phases in bulk 3D systems have not been important targets for constructing dielectric/ferroelectric materials. However, recent investigations on Dion-Jacobson phases have provided new impetus to dielectric/ferroelectric materials. Dion-Jacobson perovskites can also facilitate delamination into 2D nanosheets. Layer-by-layer engineering of 2D perovskite nanosheets has a great potential for the rational design of new high-k dielectric/ferroelectric materials and nanodevices.
机译:我们概述了最近对Dion-jacobson型钙培的介质/铁电特性的研究,包括散装3D分层系统及其剥离的2D纳米蛋白酶。 与Ruddlesden-popper和Aurivillius阶段形成鲜明对比,散装3D系统中的Dion-jacobson相位并不是构造介质/铁电材料的重要目标。 然而,最近对奈西雅各逊阶段的调查已经为介质/铁电材料提供了新的推动力。 Dion-jacobson Perovskites还可以促进分层到2D纳米胸部。 2D PEROVSKITE NANOSHEELS的逐层工程具有巨大的新型高k电介质/铁电材料和纳米型设计的潜力。

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