Rutherford Bethany X, Dou Hongyi, Zhang Bruce, He Zihao, Barnard James P, Paldi Robynne L, Wang Haiyan
School of Materials Engineering, Purdue University, West Lafayette, IN 47907, USA.
School of Electrical and Computer Engineering, Purdue University, West Lafayette, IN 47907, USA.
Nanomaterials (Basel). 2022 Oct 3;12(19):3460. doi: 10.3390/nano12193460.
Nanocomposite thin film materials present great opportunities in coupling materials and functionalities in unique nanostructures including nanoparticles-in-matrix, vertically aligned nanocomposites (VANs), and nanolayers. Interestingly the nanocomposites processed through a non-equilibrium processing method, e.g., pulsed laser deposition (PLD), often possess unique metastable phases and microstructures that could not achieve using equilibrium techniques, and thus lead to novel physical properties. In this work, a unique three-phase system composed of BaTiO (BTO), with two immiscible metals, Au and Fe, is demonstrated. By adjusting the deposition laser frequency from 2 Hz to 10 Hz, the phase and morphology of Au and Fe nanoparticles in BTO matrix vary from separated Au and Fe nanoparticles to well-mixed Au-Fe alloy pillars. This is attributed to the non-equilibrium process of PLD and the limited diffusion under high laser frequency (e.g., 10 Hz). The magnetic and optical properties are effectively tuned based on the morphology variation. This work demonstrates the stabilization of non-equilibrium alloy structures in the VAN form and allows for the exploration of new non-equilibrium materials systems and their properties that could not be easily achieved through traditional equilibrium methods.
纳米复合薄膜材料在将材料与功能耦合于独特的纳米结构(包括基质中的纳米颗粒、垂直排列的纳米复合材料(VANs)和纳米层)方面展现出巨大机遇。有趣的是,通过非平衡加工方法(如脉冲激光沉积(PLD))制备的纳米复合材料通常具有独特的亚稳相和微观结构,而这些是使用平衡技术无法实现的,因此会带来新颖的物理性能。在这项工作中,展示了一种由钛酸钡(BTO)与两种互不相溶的金属金(Au)和铁(Fe)组成的独特三相系统。通过将沉积激光频率从2赫兹调整到10赫兹,BTO基质中Au和Fe纳米颗粒的相和形态从分离的Au和Fe纳米颗粒变为充分混合的Au-Fe合金柱。这归因于PLD的非平衡过程以及高激光频率(如10赫兹)下有限的扩散。基于形态变化,磁性能和光学性能得到了有效调控。这项工作证明了以VAN形式存在的非平衡合金结构的稳定性,并有助于探索新的非平衡材料体系及其性能,而这些是通过传统平衡方法难以轻易实现的。