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首页> 外文期刊>Current opinion in solid state & materials science >Interfacial coupling in heteroepitaxial vertically aligned nanocomposite thin films: From lateral to vertical control
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Interfacial coupling in heteroepitaxial vertically aligned nanocomposite thin films: From lateral to vertical control

机译:异质外延垂直排列的纳米复合薄膜的界面耦合:从横向到纵向的控制

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摘要

Very recently, vertically aligned nanocomposite (VAN) thin films have served as an intriguing platform to obtain significant insights of the fundamental physics and achieve novel functionalities for potential technological applications. In this review article, we have investigated the lattice mismatch and vertical interfacial coupling in representative VAN systems for probing strain engineering in the vertical direction. Systematic studies of ferroelectricity, low field magnetoresistance and magnetoelectric coupling in VAN architectures have been reviewed and compared. The enhancement and tunability of the physical properties are attributed to the effective strain-, phase- and interface- couplings in VAN films. In the end, important and promising research directions in this field are proposed, including understanding the growth mechanisms of VAN structures, and creating more effective couplings for enhanced functionalities and ultimate device applications.
机译:最近,垂直排列的纳米复合材料(VAN)薄膜已成为吸引人的平台,以获取有关基础物理学的重要见解并实现潜在技术应用的新颖功能。在这篇评论文章中,我们研究了代表VAN系统中的晶格失配和垂直界面耦合,以探测垂直方向的应变工程。回顾并比较了VAN架构中铁电,低场磁阻和磁电耦合的系统研究。物理性能的提高和可调性归因于VAN薄膜中有效的应变,相位和界面耦合。最后,提出了该领域重要而有前途的研究方向,包括了解VAN结构的生长机理,以及为增强功能和最终设备应用创建更有效的耦合。

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