材料科学
薄膜
铁电性
纳米技术
光电子学
电介质
作者
Liang Zou,Pu Feng,P.P. Jing,Chaoqun Dang,Haiming Zhu,Xin He,Lijie Zhang,Tao Wang,Fei Xue
标识
DOI:10.1016/j.mee.2025.112354
摘要
The recent discovery of two-dimensional ferroelectric semiconductors, such as In 2 Se 3 , has opened promising avenues for ultra-thin micro-nano electronic devices, and energy-efficient neuromorphic systems. Despite these exciting prospects, achieving large-area, high-quality, layer-controlled growth of single-phase In 2 Se 3 remains a considerable challenge. In this study, we present a seed-assisted strategy for growing uniform, centimeter-scale β'-In 2 Se 3 thin films by mixing In 2 O 3 and In 2 Se 3 single crystals in a specific ratio. The resulting β'-In 2 Se 3 phase and composition are verified through X-ray diffraction, transmission electron microscopy, and Raman spectroscopy. Furthermore, the ferroelectric properties and domain configurations have been characterized by using polarized light microscopy and piezoresponse force microscopy. Importantly, we investigate the topological evolution of ferroelectric domains across films with varying thicknesses, revealing insights into domain structure modulation. This growth method not only provides a scalable route for synthesizing similar ferroelectric two-dimensional materials but also a possibility for the practical integration of β'-In 2 Se 3 in optoelectronic, neuromorphic, and other advanced micro-nano electronic applications. • Seed-assisted CVD enables uniform β'-In 2 Se 3 thin films near a centimeter scale. • The films exhibit stable room-temperature in-plane ferroelectricity. • Domain structures show flux-closure and vortex-like topologies.
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