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The Size-Dependent Ferroelectric Phase Transition in BaTiO3 Nanocrystals Probed by Surface Plasmons

机译:表面等离激元探测BaTiO3纳米晶体中尺寸依赖的铁电相变

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摘要

A new technique for probing the temperature dependence of the dielectric constant of ferroelectric nanocrystals (NCs) using shifts in the localized surface plasmon resonance (LSPR) wavelength of gold nanoparticles attached to the surface of the ferroelectric NCs is demonstrated. This technique can selectively probe the surface of the NCs and was used to study the ferroelectric-to-paraelectric phase transition of barium titanate (BTO) nanocubes in three size regimes of 16 ± 4, 47 ± 11, and 220 ± 140 nm. Temperature-dependent Raman spectroscopy was also applied to probe the whole volume of the NCs. The LSPR-based technique revealed that the ~16 nm BTO NCs were dominated by surface effects, and as the NC size increased bulk BTO behavior governed. This supports recent propositions about the lack of intrinsic size dependence of the transition temperature. Therefore, the surface chemistry/structure probably affected the ferroelectric behavior rather than finite size effects. A distinct phase transition at the surface characterized by a very long relaxation time was detected by the LSPR-based technique.
机译:展示了一种利用附着在铁电NCs表面的金纳米粒子的局部表面等离子体共振(LSPR)波长偏移来探测铁电纳米晶体(NCs)介电常数对温度的依赖性的新技术。该技术可以选择性地探测NC的表面,并用于研究钛酸钡(BTO)纳米立方体在16±4、47±11和220±140 nm三种尺寸范围内的铁电-顺电相变。温度依赖型拉曼光谱仪也用于探测NC的整个体积。基于LSPR的技术表明,约16 nm的BTO NC受表面效应支配,并且随着NC尺寸的增大,整体BTO行为受到控制。这支持了关于过渡温度缺乏内在尺寸依赖性的最新主张。因此,表面化学/结构可能会影响铁电行为,而不是有限的尺寸效应。通过基于LSPR的技术检测到表面具有明显的弛豫时间的明显相变。

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