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纳米光学研究单个 VO(2)微晶体的金属-绝缘体相行为。

Nano-optical investigations of the metal-insulator phase behavior of individual VO(2) microcrystals.

机构信息

Department of Physics, University of Washington, Seattle, Washington 98195, USA.

出版信息

Nano Lett. 2010 May 12;10(5):1574-81. doi: 10.1021/nl903765h.

Abstract

Despite the relatively simple stoichiometry and structure of VO(2), many questions regarding the nature of its famous metal-insulator transition (MIT) remain unresolved. This is in part due to the prevailing use of polycrystalline film samples and the limited spatial resolution in most studies, hindering access to and control of the complex phase behavior and its inevitable spatial inhomogeneities. Here, we investigate the MIT and associated nanodomain formation in individual VO(2) microcrystals subject to substrate stress. We employ symmetry-selective polarization Raman spectroscopy to identify crystals that are strain-stabilized in either the monoclinic M1 or M2 insulating phase at room-temperature. Raman measurements are further used to characterize the phase dependence on temperature, identifying the appearance of the M2 phase during the MIT. The associated formation and spatial evolution of rutile (R) metallic domains is studied with nanometer-scale spatial resolution using infrared scattering-scanning near-field optical microscopy (s-SNOM). We deduce that even for small crystals of VO(2), the MIT is influenced by the competition between the R, M1, and M2 crystal phases with their different lattice constants subjected to the external substrate-induced stress. The results have important implications for the interpretation of the investigations of conventional polycrystalline thin films where the mutual interaction of constituent crystallites may affect the nature of the MIT in VO(2).

摘要

尽管 VO(2) 的化学计量和结构相对简单,但关于其著名的金属-绝缘体转变 (MIT) 的性质仍有许多问题尚未解决。这在一定程度上是由于多晶薄膜样品的普遍使用和大多数研究中有限的空间分辨率,这阻碍了对复杂相行为及其不可避免的空间不均匀性的了解和控制。在这里,我们研究了在基底应力作用下单个 VO(2) 微晶体中的 MIT 和相关的纳米畴形成。我们采用对称选择极化拉曼光谱来识别在室温下处于单斜 M1 或 M2 绝缘相稳定应变的晶体。拉曼测量进一步用于表征温度对相的依赖性,确定在 MIT 过程中 M2 相的出现。使用纳米级空间分辨率的红外散射-扫描近场光学显微镜 (s-SNOM) 研究了与金红石 (R) 金属域的形成和空间演化。我们推断,即使对于 VO(2) 的小晶体,MIT 也受到 R、M1 和 M2 晶体相之间的竞争的影响,这些晶体相具有不同的晶格常数,并受到外部基底诱导应力的影响。这些结果对于解释传统多晶薄膜的研究具有重要意义,其中组成晶相的相互作用可能会影响 VO(2) 中 MIT 的性质。

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