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Rhombohedrally-Distorted Orthorhombic Hf_(0.5)Zr_(0.5)O_(2-x) Stabilized by Cooperative Oxygen Vacancies and Lattice Distortions
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作者 Lei Liao Chen Zhang +14 位作者 Zhuohui Liu Chen Cai Huacong Sun Xudan Huang Ruijie Li Wenxi Li Dongbao Luo Jianlin Wang Xiao Li Lei Liu Kuijuan Jin Lifen Wang Huixiong Deng Chen Ge Xuedong Bai 《Chinese Physics Letters》 2026年第3期62-86,共25页
Hafnia-based ferroelectrics have emerged as promising materials for next-generation nanoelectronics owing to their robust nanoscale properties and compatibility with metal-oxide-semiconductor technology.However,their ... Hafnia-based ferroelectrics have emerged as promising materials for next-generation nanoelectronics owing to their robust nanoscale properties and compatibility with metal-oxide-semiconductor technology.However,their metastable nature remains a key challenge for practical implementation.Utilizing scanning transmission electron microscopy,we investigated the atomic-scale mechanisms governing ferroelectric transitions and the metastability of polar phases in 10-nm-thick Hf_(0.5)Zr_(0.5)O_(2)thin films.Our results demonstrate that oxygen vacancies,coupled with rhombohedral distortions of the cation lattice,facilitate ferroelectric phase transitions and enable robust polar switching through adaptive processes,including cell-by-cell oxygen displacement and domain-wall-mediated nucleation and growth.These findings underscore the pivotal role of oxygen vacancies and lattice distortions in stabilizing polar phases and provide detailed insights into the atomic structures and transition dynamics of polymorphic Hf_(0.5)Zr_(0.5)O_(2-x),thereby advancing its potential for practical device applications. 展开更多
关键词 METASTABILITY rhombohedrally distorted orthorhombic hf zr o x lattice distortions ferroelectric transitions oxygen vacancies metastability polar phases scanning transmission electron microscopywe
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