Del Campo Adolfo, Ruiz-Gómez Sandra, Trapero Eva M, Granados-Miralles Cecilia, Quesada Adrián, Foerster Michael, Aballe Lucía, Prieto José Emilio, de la Figuera Juan
Instituto de Cerámica y Vidrio, CSIC, Madrid E-28049, Spain.
Max-Planck-Institut für Chemische Physik fester Stoffe, Dresden 01187, Germany.
J Phys Chem C Nanomater Interfaces. 2022 Aug 18;126(32):13755-13761. doi: 10.1021/acs.jpcc.2c03391. Epub 2022 Aug 9.
We have monitored the Verwey transition in micrometer-wide, nanometer-thick magnetite islands on epitaxial Ru films on AlO(0001) using Raman spectroscopy. The islands have been grown by high-temperature oxygen-assisted molecular beam epitaxy. Below 100 K and for thicknesses above 20 nm, the Raman spectra correspond to those observed in bulk crystals and high-quality thin films for the sub-Verwey magnetite structure. At room temperature, the width of the cubic phase modes is similar to the best reported for bulk crystals, indicating a similar strength of electron-phonon interaction. The evolution of the Raman spectra upon cooling suggests that for islands thicker than 20 nm, structural changes appear first at temperatures starting at 150 K while the Verwey transition itself takes place at around 115 K. However, islands thinner than 20 nm show very different Raman spectra, indicating that while a transition takes place, the charge order of the ultrathin islands differs markedly from their thicker counterparts.
我们利用拉曼光谱监测了在AlO(0001)上外延Ru薄膜上的微米级宽、纳米级厚的磁铁矿岛中的Verwey转变。这些岛是通过高温氧辅助分子束外延生长的。在100 K以下且厚度大于20 nm时,拉曼光谱与在块状晶体和高质量薄膜中观察到的亚Verwey磁铁矿结构的光谱相对应。在室温下,立方相模式的宽度与块状晶体报道的最佳值相似,表明电子 - 声子相互作用强度相似。冷却时拉曼光谱的演变表明,对于厚度大于20 nm的岛,结构变化首先出现在150 K开始的温度下,而Verwey转变本身发生在约115 K。然而,厚度小于20 nm的岛显示出非常不同的拉曼光谱,这表明虽然发生了转变,但超薄岛的电荷顺序与其较厚的对应物明显不同。