Multifunctional, self-assembled oxide nanocomposite thin films and devices

被引:0
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作者
Wenrui Zhang
Ramamoorthy Ramesh
Judith L. MacManus-Driscoll
Haiyan Wang
机构
[1] Texas A&M University,Department of Materials Science and Engineering
[2] University of California,Department of Materials Science and Engineering and Department of Physics
[3] Lawrence Berkeley National Laboratory,Department of Materials Science and Metallurgy
[4] University of Cambridge,Department of Electrical and Computer Engineering and Department of Materials Science and Engineering
[5] Texas A&M University,undefined
来源
MRS Bulletin | 2015年 / 40卷
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摘要
Complex oxides provide an ideal playground for exploring the interplay among the fundamental degrees of freedom: structural (lattice), electronic (orbital and charge), and magnetic (spin). In thin films and heterostructures, new states of matter can emerge as a consequence of such interactions. Over the past decade, the ability to synthesize self-assembled nanocomposite thin films of metal oxides has provided another pathway for creating new interfaces and, thus, new physical phenomena. In this article, we describe examples of such materials systems explored to date and highlight the fascinating multifunctional properties achieved. These include enhanced flux pinning in superconductors, strain-enhanced ferroelectricity, strain- and charge-coupled magnetoelectrics, tunable magnetotransport, novel electrical/ionic transport, memristors, and tunable dielectrics.
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页码:736 / 745
页数:9
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