Järvilehto Jänis, Velasco Jorge A, Yim Jihong, Gonsalves Christine, Puurunen Riikka L
Department of Chemical and Metallurgical Engineering, School of Chemical Engineering, Aalto University, P.O. Box 16100, FI-00076 AALTO, Finland.
Phys Chem Chem Phys. 2023 Aug 30;25(34):22952-22964. doi: 10.1039/d3cp01829f.
Atomic layer deposition (ALD) has found significant use in the coating of high-aspect-ratio (HAR) structures. Approaches to model ALD film conformality in HAR structures can generally be classified into diffusion-reaction (DR) models, ballistic transport-reaction (BTR) models and Monte Carlo simulations. This work compares saturation profiles obtained using a DR model and a BTR model. The saturation profiles were compared qualitatively and quantitatively in terms of half-coverage penetration depth, slope at half-coverage penetration depth and adsorption front broadness. The results showed qualitative agreement between the models, except for a section of elevated surface coverage at the end of the structure, 'trunk', observed in the BTR model. Quantitatively, the BTR model produced deeper penetration into the structure, lower absolute values of the slope at half-coverage penetration depth and broader adsorption fronts compared to the DR model. These differences affect the values obtained when extracting kinetic parameters from the saturation profiles.
原子层沉积(ALD)在高纵横比(HAR)结构的涂层方面有重要应用。用于模拟HAR结构中ALD膜保形性的方法通常可分为扩散反应(DR)模型、弹道传输反应(BTR)模型和蒙特卡罗模拟。这项工作比较了使用DR模型和BTR模型获得的饱和分布。从半覆盖穿透深度、半覆盖穿透深度处的斜率和吸附前沿宽度方面对饱和分布进行了定性和定量比较。结果表明,除了在BTR模型中观察到的结构末端“主干”处表面覆盖率升高的部分外,模型之间在定性上是一致的。在定量方面,与DR模型相比,BTR模型对结构的穿透更深,半覆盖穿透深度处斜率的绝对值更低,吸附前沿更宽。这些差异会影响从饱和分布中提取动力学参数时获得的值。