蚀刻(微加工)
材料科学
覆盖层
钼
各向同性腐蚀
干法蚀刻
电介质
图层(电子)
反应离子刻蚀
硅
电阻率和电导率
热氧化
表面粗糙度
金属
结晶度
表面光洁度
光电子学
冶金
X射线光电子能谱
分析化学(期刊)
原子层沉积
溅射
纳米技术
扩散
作者
Juha Ojala,Mykhailo Chundak,Anton Vihervaara,Marko Vehkamäki,Mikko Ritala
出处
期刊:Journal of vacuum science & technology
[American Institute of Physics]
日期:2025-11-18
卷期号:43 (6)
摘要
Molybdenum is a material of significant interest in the development of future interconnects for microelectronics. This is due to a slower increase in resistivity with diminishing critical dimension as compared to copper, and the potential for integration to silicon and dielectric layers without diffusion barriers. These future interconnect technologies require accurate patterning and manufacturing processes. With thermal atomic layer etching, isotropic and selective etching is possible with the highest degree of control over the etching process. This paper describes the development of an atomic layer etching process for etching metallic molybdenum using O2 and NbCl5. Thermodynamic calculations reveal that in addition to etching the oxidized surface, NbCl5 reacts with the molybdenum metal in a self-limiting fashion, which enables etching during both of the reactant pulses. The oxidation of the metal surface is diffusion-limited, and the etch per cycle is highly temperature dependent, ranging from 0.2 to 3.9 Å at 250–400 °C. No negative effects on film crystallinity or resistivity were observed, and roughness of partially etched films was only slightly increased. Some chlorine residues were seen on the surface with in vacuo x-ray photoelectron spectroscopy, as well as trace amounts of Nb. No metallic residues could be seen on a fully etched sample.
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