Physics of Semiconductors & Devices Laboratory, Department of Physics and Engineering, Moldova State University, 60A Mateevici str., MD-2009 Chişinău, Republic of Moldova.
Institut für Materialphysik, Georg-August-Universität-Göttingen, Friedrich-Hund-Platz 1, D-37077 Göttingen, Germany.
Nanoscale. 2023 Jul 13;15(27):11592-11602. doi: 10.1039/d3nr01350b.
Processes of self-organization play a key role in the development of innovative functional nanocomposites, allowing, in particular, the transformation of metastable solid solutions into multilayers by activating spinodal decomposition instead of layer-by-layer film growth. We report the formation of strained layered (V,Ti)O nanocomposites in thin polycrystalline films using a spinodal decomposition. Already during the growth of VTiO films, spinodal decomposition was detected while producing atomic-scale disordered V- and Ti-rich phases. Post-growth annealing enhances compositional modulation, arranges the local atomic structures of the phases, and yields periodically layered nanostructures that resemble superlattices. The coherent interfacing of the V- and Ti-rich layers results in the compression of the V-rich phase along the -axis of the rutile structure and enables strain-enhanced thermochromism. The latter is characterized by a simultaneous decrease in the temperature and width of the metal-insulator transition in the V-rich phase. Our results provide proof-of-concept for an alternative strategy to develop VO-based thermochromic coatings by introducing strain-enhanced thermochromism into polycrystalline thin films.
自组织过程在创新功能纳米复合材料的发展中起着关键作用,特别是通过激活旋节分解而不是逐层膜生长,允许亚稳固溶体转变为多层结构。我们报告了在薄多晶薄膜中使用旋节分解形成应变层状(V,Ti)O 纳米复合材料。在 VTiO 薄膜的生长过程中,已经检测到旋节分解,同时产生原子尺度无序的 V 和 Ti 富相。生长后的退火增强了组成调制,安排了各相的局部原子结构,并产生了类似于超晶格的周期性层状纳米结构。V 和 Ti 富层的相干界面导致 V 富相沿金红石结构的 - 轴压缩,并实现应变增强的热致变色性。后者的特点是 V 富相的金属 - 绝缘体转变的温度和宽度同时降低。我们的结果为通过在多晶薄膜中引入应变增强的热致变色性来开发基于 VO 的热致变色涂层提供了概念验证。