在氧化物覆盖的中,纳米缩诱导的地下阶段工程.
Megha Sasidharan Nisha1, Kiran Mangalampalli2
1Department of Physics and Nanotechnology, SRM Institute of Science and Technology, Kattankulathur-603203, Tamil Nadu, India. ms8267@srmist.edu.in.
Nanoscale
|January 30, 2026
概括
在氧化物层下控制相工程通过优化纳米沉积来实现. 在关键负载窗口内,球形缩使先进的器件能够有序地恢复晶体.
科学领域:
- 材料科学 材料科学 材料科学
- 纳米技术 纳米技术
- 固态物理 固态物理
背景情况:
- 中的地下相位工程为电子设备提供了新的可能性.
- 在氧化物层下控制高压多态的形成是一种新的方法.
- 了解接触几何和氧化物约束的影响至关重要.
研究的目的:
- 为了比较利的伯科维奇和球形的纳米沉积,用于相变.
- 调查接触几何和氧化物约束如何控制地下相位工程.
- 为了确定在中控制晶相形成的最佳条件.
主要方法:
- 系统地比较SiO2覆盖Si100上的尖和球形纳米沉积.
- 使用拉曼光谱和横截面电子显微镜进行分析.
- 在不同的缩负荷下研究的相变.
主要成果:
- 尖的缩在较低负载时启动相变,但导致氧化物断裂.
- 球形缩延迟了转换,但使应力更加均地分布.
- 为了优化晶体恢复,确定了一个关键的加载窗口,中等负载产生有序相,过度负载导致无形崩.
结论:
- 氧化物层调节压力放松动力学,而不会改变基本的转换压力.
- 接触几何和氧化物约束极大地影响了地下相形成.
- 这项工作为设计用于光子和传感应用的晶相提供了途径.
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